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NSR database version of April 25, 2024.

Search: Author = M.Islam

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2024AC01      Phys.Rev. C 109, 014911 (2024)

S.Acharya, D.Adamova, G.Aglieri Rinella, M.Agnello, N.Agrawal, Z.Ahammed, S.Ahmad, S.U.Ahn, I.Ahuja, A.Akindinov, M.Al-Turany, D.Aleksandrov, B.Alessandro, H.M.Alfanda, R.Alfaro Molina, B.Ali, A.Alici, N.Alizadehvandchali, A.Alkin, J.Alme, G.Alocco, T.Alt, A.R.Altamura, I.Altsybeev, J.R.Alvarado, M.N.Anaam, C.Andrei, N.Andreou, A.Andronic, V.Anguelov, F.Antinori, P.Antonioli, N.Apadula, L.Aphecetche, H.Appelshauser, C.Arata, S.Arcelli, M.Aresti, R.Arnaldi, J.G.M.C.A.Arneiro, I.C.Arsene, M.Arslandok, A.Augustinus, R.Averbeck, M.D.Azmi, H.Baba, A.Badala, J.Bae, Y.W.Baek, X.Bai, R.Bailhache, Y.Bailung, A.Balbino, A.Baldisseri, B.Balis, D.Banerjee, Z.Banoo, R.Barbera, F.Barile, L.Barioglio, M.Barlou, B.Barman, G.G.Barnafoldi, L.S.Barnby, V.Barret, L.Barreto, C.Bartels, K.Barth, E.Bartsch, N.Bastid, S.Basu, G.Batigne, D.Battistini, B.Batyunya, D.Bauri, J.L.Bazo Alba, I.G.Bearden, C.Beattie, P.Becht, D.Behera, I.Belikov, A.D.C.Bell Hechavarria, F.Bellini, R.Bellwied, S.Belokurova, Y.A.V.Beltran, G.Bencedi, S.Beole, Y.Berdnikov, A.Berdnikova, L.Bergmann, M.G.Besoiu, L.Betev, P.P.Bhaduri, A.Bhasin, M.A.Bhat, B.Bhattacharjee, L.Bianchi, N.Bianchi, J.Bielcik, J.Bielcikova, J.Biernat, A.P.Bigot, A.Bilandzic, G.Biro, S.Biswas, N.Bize, J.T.Blair, D.Blau, M.B.Blidaru, N.Bluhme, C.Blume, G.Boca, F.Bock, T.Bodova, A.Bogdanov, S.Boi, J.Bok, L.Boldizsar, M.Bombara, P.M.Bond, G.Bonomi, H.Borel, A.Borissov, A.G.Borquez Carcamo, H.Bossi, E.Botta, Y.E.M.Bouziani, L.Bratrud, P.Braun-Munzinger, M.Bregant, M.Broz, G.E.Bruno, M.D.Buckland, D.Budnikov, H.Buesching, S.Bufalino, P.Buhler, N.Burmasov, Z.Buthelezi, A.Bylinkin, S.A.Bysiak, M.Cai, H.Caines, A.Caliva, E.Calvo Villar, J.M.M.Camacho, P.Camerini, F.D.M.Canedo, S.L.Cantway, M.Carabas, A.A.Carballo, F.Carnesecchi, R.Caron, L.A.D.Carvalho, J.Castillo Castellanos, F.Catalano, C.Ceballos Sanchez, I.Chakaberia, P.Chakraborty, S.Chandra, S.Chapeland, M.Chartier, S.Chattopadhyay, S.Chattopadhyay, T.Cheng, C.Cheshkov, B.Cheynis, V.Chibante Barroso, D.D.Chinellato, E.S.Chizzali, J.Cho, S.Cho, P.Chochula, D.Choudhury, P.Christakoglou, C.H.Christensen, P.Christiansen, T.Chujo, M.Ciacco, C.Cicalo, F.Cindolo, M.R.Ciupek, G.Clai, F.Colamaria, J.S.Colburn, D.Colella, M.Colocci, M.Concas, G.Conesa Balbastre, Z.Conesa del Valle, G.Contin, J.G.Contreras, M.L.Coquet, P.Cortese, M.R.Cosentino, F.Costa, S.Costanza, C.Cot, J.Crkovska, P.Crochet, R.Cruz-Torres, P.Cui, A.Dainese, M.C.Danisch, A.Danu, P.Das, P.Das, S.Das, A.R.Dash, S.Dash, A.De Caro, G.de Cataldo, J.de Cuveland, A.De Falco, D.De Gruttola, N.De Marco, C.De Martin, S.De Pasquale, R.Deb, R.Del Grande, L.Dello Stritto, W.Deng, P.Dhankher, D.Di Bari, A.Di Mauro, B.Diab, R.A.Diaz, T.Dietel, Y.Ding, J.Ditzel, R.Divia, D.U.Dixit, O.Djuvsland, U.Dmitrieva, A.Dobrin, B.Donigus, J.M.Dubinski, A.Dubla, S.Dudi, P.Dupieux, M.Durkac, N.Dzalaiova, T.M.Eder, R.J.Ehlers, F.Eisenhut, R.Ejima, D.Elia, B.Erazmus, F.Ercolessi, B.Espagnon, G.Eulisse, D.Evans, S.Evdokimov, L.Fabbietti, M.Faggin, J.Faivre, F.Fan, W.Fan, A.Fantoni, M.Fasel, P.Fecchio, A.Feliciello, G.Feofilov, A.Fernandez Tellez, L.Ferrandi, M.B.Ferrer, A.Ferrero, C.Ferrero, A.Ferretti, V.J.G.Feuillard, V.Filova, D.Finogeev, F.M.Fionda, E.Flatland, F.Flor, A.N.Flores, S.Foertsch, I.Fokin, S.Fokin, E.Fragiacomo, E.Frajna, U.Fuchs, N.Funicello, C.Furget, A.Furs, T.Fusayasu, J.J.Gaardhoje, M.Gagliardi, A.M.Gago, T.Gahlaut, C.D.Galvan, D.R.Gangadharan, P.Ganoti, C.Garabatos, T.Garcia Chavez, E.Garcia-Solis, C.Gargiulo, P.Gasik, A.Gautam, M.B.Gay Ducati, M.Germain, A.Ghimouz, C.Ghosh, M.Giacalone, G.Gioachin, P.Giubellino, P.Giubilato, A.M.C.Glaenzer, P.Glassel, E.Glimos, D.J.Q.Goh, V.Gonzalez, M.Gorgon, K.Goswami, S.Gotovac, V.Grabski, L.K.Graczykowski, E.Grecka, A.Grelli, C.Grigoras, V.Grigoriev, S.Grigoryan, F.Grosa, J.F.Grosse-Oetringhaus, R.Grosso, D.Grund, N.A.Grunwald, G.G.Guardiano, R.Guernane, M.Guilbaud, K.Gulbrandsen, T.Gundem, T.Gunji, W.Guo, A.Gupta, R.Gupta, R.Gupta, K.Gwizdziel, L.Gyulai, C.Hadjidakis, F.U.Haider, S.Haidlova, H.Hamagaki, A.Hamdi, Y.Han, B.G.Hanley, R.Hannigan, J.Hansen, M.R.Haque, J.W.Harris, A.Harton, H.Hassan, D.Hatzifotiadou, P.Hauer, L.B.Havener, S.T.Heckel, E.Hellbar, H.Helstrup, M.Hemmer, T.Herman, G.Herrera Corral, F.Herrmann, S.Herrmann, K.F.Hetland, B.Heybeck, H.Hillemanns, B.Hippolyte, F.W.Hoffmann, B.Hofman, G.H.Hong, M.Horst, A.Horzyk, Y.Hou, P.Hristov, C.Hughes, P.Huhn, L.M.Huhta, T.J.Humanic, A.Hutson, D.Hutter, R.Ilkaev, H.Ilyas, M.Inaba, G.M.Innocenti, M.Ippolitov, A.Isakov, T.Isidori, M.S.Islam, M.Ivanov, M.Ivanov, V.Ivanov, K.E.Iversen, M.Jablonski, B.Jacak, N.Jacazio, P.M.Jacobs, S.Jadlovska, J.Jadlovsky, S.Jaelani, C.Jahnke, M.J.Jakubowska, M.A.Janik, T.Janson, S.Ji, S.Jia, A.A.P.Jimenez, F.Jonas, D.M.Jones, J.M.Jowett, J.Jung, M.Jung, A.Junique, A.Jusko, M.J.Kabus, J.Kaewjai, P.Kalinak, A.S.Kalteyer, A.Kalweit, V.Kaplin, A.Karasu Uysal, D.Karatovic, O.Karavichev, T.Karavicheva, P.Karczmarczyk, E.Karpechev, U.Kebschull, R.Keidel, D.L.D.Keijdener, M.Keil, B.Ketzer, S.S.Khade, A.M.Khan, S.Khan, A.Khanzadeev, Y.Kharlov, A.Khatun, A.Khuntia, B.Kileng, B.Kim, C.Kim, D.J.Kim, E.J.Kim, J.Kim, J.S.Kim, J.Kim, J.Kim, M.Kim, S.Kim, T.Kim, K.Kimura, S.Kirsch, I.Kisel, S.Kiselev, A.Kisiel, J.P.Kitowski, J.L.Klay, J.Klein, S.Klein, C.Klein-Bosing, M.Kleiner, T.Klemenz, A.Kluge, A.G.Knospe, C.Kobdaj, T.Kollegger, A.Kondratyev, N.Kondratyeva, E.Kondratyuk, J.Konig, S.A.Konigstorfer, P.J.Konopka, G.Kornakov, M.Korwieser, S.D.Koryciak, A.Kotliarov, V.Kovalenko, M.Kowalski, V.Kozhuharov, I.Kralik, A.Kravcakova, L.Krcal, M.Krivda, F.Krizek, K.Krizkova Gajdosova, M.Kroesen, M.Kruger, D.M.Krupova, E.Kryshen, V.Kucera, C.Kuhn, P.G.Kuijer, T.Kumaoka, D.Kumar, L.Kumar, N.Kumar, S.Kumar, S.Kundu, P.Kurashvili, A.Kurepin, A.B.Kurepin, A.Kuryakin, S.Kushpil, M.J.Kweon, Y.Kwon, S.L.La Pointe, P.La Rocca, A.Lakrathok, M.Lamanna, A.R.Landou, R.Langoy, P.Larionov, E.Laudi, L.Lautner, R.Lavicka, R.Lea, H.Lee, I.Legrand, G.Legras, J.Lehrbach, T.M.Lelek, R.C.Lemmon, I.Leon Monzon, M.M.Lesch, E.D.Lesser, P.Levai, X.Li, J.Lien, R.Lietava, I.Likmeta, B.Lim, S.H.Lim, V.Lindenstruth, A.Lindner, C.Lippmann, D.H.Liu, J.Liu, G.S.S.Liveraro, I.M.Lofnes, C.Loizides, S.Lokos, J.Lomker, P.Loncar, X.Lopez, E.Lopez Torres, P.Lu, F.V.Lugo, J.R.Luhder, M.Lunardon, G.Luparello, Y.G.Ma, M.Mager, A.Maire, E.M.Majerz, M.V.Makariev, M.Malaev, G.Malfattore, N.M.Malik, Q.W.Malik, S.K.Malik, L.Malinina, D.Mallick, N.Mallick, G.Mandaglio, S.K.Mandal, V.Manko, F.Manso, V.Manzari, Y.Mao, R.W.Marcjan, G.V.Margagliotti, A.Margotti, A.Marin, C.Markert, P.Martinengo, M.I.Martinez, G.Martinez Garcia, M.P.P.Martins, S.Masciocchi, M.Masera, A.Masoni, L.Massacrier, O.Massen, A.Mastroserio, O.Matonoha, S.Mattiazzo, A.Matyja, C.Mayer, A.L.Mazuecos, F.Mazzaschi, M.Mazzilli, J.E.Mdhluli, Y.Melikyan, A.Menchaca-Rocha, J.E.M.Mendez, E.Meninno, A.S.Menon, M.Meres, S.Mhlanga, Y.Miake, L.Micheletti, D.L.Mihaylov, K.Mikhaylov, A.N.Mishra, D.Miskowiec, A.Modak, B.Mohanty, M.Mohisin Khan, M.A.Molander, S.Monira, C.Mordasini, D.A.Moreira De Godoy, I.Morozov, A.Morsch, T.Mrnjavac, V.Muccifora, S.Muhuri, J.D.Mulligan, A.Mulliri, M.G.Munhoz, R.H.Munzer, H.Murakami, S.Murray, L.Musa, J.Musinsky, J.W.Myrcha, B.Naik, A.I.Nambrath, B.K.Nandi, R.Nania, E.Nappi, A.F.Nassirpour, A.Nath, C.Nattrass, M.N.Naydenov, A.Neagu, A.Negru, L.Nellen, R.Nepeivoda, S.Nese, G.Neskovic, N.Nicassio, B.S.Nielsen, E.G.Nielsen, S.Nikolaev, S.Nikulin, V.Nikulin, F.Noferini, S.Noh, P.Nomokonov, J.Norman, N.Novitzky, P.Nowakowski, A.Nyanin, J.Nystrand, M.Ogino, S.Oh, A.Ohlson, V.A.Okorokov, J.Oleniacz, A.C.Oliveira Da Silva, A.Onnerstad, C.Oppedisano, A.Ortiz Velasquez, J.Otwinowski, M.Oya, K.Oyama, Y.Pachmayer, S.Padhan, D.Pagano, G.Paic, S.Paisano-Guzman, A.Palasciano, S.Panebianco, H.Park, H.Park, J.Park, J.E.Parkkila, Y.Patley, R.N.Patra, B.Paul, H.Pei, T.Peitzmann, X.Peng, M.Pennisi, S.Perciballi, D.Peresunko, G.M.Perez, Y.Pestov, V.Petrov, M.Petrovici, R.P.Pezzi, S.Piano, M.Pikna, P.Pillot, O.Pinazza, L.Pinsky, C.Pinto, S.Pisano, M.Ploskon, M.Planinic, F.Pliquett, M.G.Poghosyan, B.Polichtchouk, S.Politano, N.Poljak, A.Pop, S.Porteboeuf-Houssais, V.Pozdniakov, I.Y.Pozos, K.K.Pradhan, S.K.Prasad, S.Prasad, R.Preghenella, F.Prino, C.A.Pruneau, I.Pshenichnov, M.Puccio, S.Pucillo, Z.Pugelova, S.Qiu, L.Quaglia, S.Ragoni, A.Rai, A.Rakotozafindrabe, L.Ramello, F.Rami, T.A.Rancien, M.Rasa, S.S.Rasanen, R.Rath, M.P.Rauch, I.Ravasenga, K.F.Read, C.Reckziegel, A.R.Redelbach, K.Redlich, C.A.Reetz, H.D.Regules-Medel, A.Rehman, F.Reidt, H.A.Reme-Ness, Z.Rescakova, K.Reygers, A.Riabov, V.Riabov, R.Ricci, M.Richter, A.A.Riedel, W.Riegler, A.G.Riffero, C.Ristea, M.V.Rodriguez, M.Rodriguez Cahuantzi, S.A.Rodriguez Ramirez, K.Roed, R.Rogalev, E.Rogochaya, T.S.Rogoschinski, D.Rohr, D.Rohrich, P.F.Rojas, S.Rojas Torres, P.S.Rokita, G.Romanenko, F.Ronchetti, A.Rosano, E.D.Rosas, K.Roslon, A.Rossi, A.Roy, S.Roy, N.Rubini, D.Ruggiano, R.Rui, P.G.Russek, R.Russo, A.Rustamov, E.Ryabinkin, Y.Ryabov, A.Rybicki, H.Rytkonen, J.Ryu, W.Rzesa, O.A.M.Saarimaki, S.Sadhu, S.Sadovsky, J.Saetre, K.Safarik, P.Saha, S.K.Saha, S.Saha, B.Sahoo, B.Sahoo, R.Sahoo, S.Sahoo, D.Sahu, P.K.Sahu, J.Saini, K.Sajdakova, S.Sakai, M.P.Salvan, S.Sambyal, D.Samitz, I.Sanna, T.B.Saramela, P.Sarma, V.Sarritzu, V.M.Sarti, M.H.P.Sas, S.Sawan, J.Schambach, H.S.Scheid, C.Schiaua, R.Schicker, F.Schlepper, A.Schmah, C.Schmidt, H.R.Schmidt, M.O.Schmidt, M.Schmidt, N.V.Schmidt, A.R.Schmier, R.Schotter, A.Schroter, J.Schukraft, K.Schweda, G.Scioli, E.Scomparin, J.E.Seger, Y.Sekiguchi, D.Sekihata, M.Selina, I.Selyuzhenkov, S.Senyukov, J.J.Seo, D.Serebryakov, L.Serksnyte, A.Sevcenco, T.J.Shaba, A.Shabetai, R.Shahoyan, A.Shangaraev, A.Sharma, B.Sharma, D.Sharma, H.Sharma, M.Sharma, S.Sharma, S.Sharma, U.Sharma, A.Shatat, O.Sheibani, K.Shigaki, M.Shimomura, J.Shin, S.Shirinkin, Q.Shou, Y.Sibiriak, S.Siddhanta, T.Siemiarczuk, T.F.Silva, D.Silvermyr, T.Simantathammakul, R.Simeonov, B.Singh, B.Singh, K.Singh, R.Singh, R.Singh, R.Singh, S.Singh, V.K.Singh, V.Singhal, T.Sinha, B.Sitar, M.Sitta, T.B.Skaali, G.Skorodumovs, M.Slupecki, N.Smirnov, R.J.M.Snellings, E.H.Solheim, J.Song, C.Sonnabend, F.Soramel, A.B.Soto-hernandez, R.Spijkers, I.Sputowska, J.Staa, J.Stachel, I.Stan, P.J.Steffanic, S.F.Stiefelmaier, D.Stocco, I.Storehaug, P.Stratmann, S.Strazzi, A.Sturniolo, C.P.Stylianidis, A.A.P.Suaide, C.Suire, M.Sukhanov, M.Suljic, R.Sultanov, V.Sumberia, S.Sumowidagdo, S.Swain, I.Szarka, M.Szymkowski, S.F.Taghavi, G.Taillepied, J.Takahashi, G.J.Tambave, S.Tang, Z.Tang, J.D.Tapia Takaki, N.Tapus, L.A.Tarasovicova, M.G.Tarzila, G.F.Tassielli, A.Tauro, A.Tavira Garcia, G.Tejeda Munoz, A.Telesca, L.Terlizzi, C.Terrevoli, S.Thakur, D.Thomas, A.Tikhonov, N.Tiltmann, A.R.Timmins, M.Tkacik, T.Tkacik, A.Toia, R.Tokumoto, K.Tomohiro, N.Topilskaya, M.Toppi, T.Tork, P.V.Torres, V.V.Torres, A.G.Torres Ramos, A.Trifiro, A.S.Triolo, S.Tripathy, T.Tripathy, S.Trogolo, V.Trubnikov, W.H.Trzaska, T.P.Trzcinski, A.Tumkin, R.Turrisi, T.S.Tveter, K.Ullaland, B.Ulukutlu, A.Uras, G.L.Usai, M.Vala, N.Valle, L.V.R.van Doremalen, M.van Leeuwen, C.A.van Veen, R.J.G.van Weelden, P.Vande Vyvre, D.Varga, Z.Varga, M.Vasileiou, A.Vasiliev, O.Vazquez Doce, O.Vazquez Rueda, V.Vechernin, E.Vercellin, S.Vergara Limon, R.Verma, L.Vermunt, R.Vertesi, M.Verweij, L.Vickovic, Z.Vilakazi, O.Villalobos Baillie, A.Villani, A.Vinogradov, T.Virgili, M.M.O.Virta, V.Vislavicius, A.Vodopyanov, B.Volkel, M.A.Volkl, K.Voloshin, S.A.Voloshin, G.Volpe, B.von Haller, I.Vorobyev, N.Vozniuk, J.Vrlakova, J.Wan, C.Wang, D.Wang, Y.Wang, Y.Wang, A.Wegrzynek, F.T.Weiglhofer, S.C.Wenzel, J.P.Wessels, J.Wiechula, J.Wikne, G.Wilk, J.Wilkinson, G.A.Willems, B.Windelband, M.Winn, J.R.Wright, W.Wu, Y.Wu, R.Xu, A.Yadav, A.K.Yadav, S.Yalcin, Y.Yamaguchi, S.Yang, S.Yano, Z.Yin, I.-K.Yoo, J.H.Yoon, H.Yu, S.Yuan, A.Yuncu, V.Zaccolo, C.Zampolli, F.Zanone, N.Zardoshti, A.Zarochentsev, P.Zavada, N.Zaviyalov, M.Zhalov, B.Zhang, C.Zhang, L.Zhang, S.Zhang, X.Zhang, Y.Zhang, Z.Zhang, M.Zhao, V.Zherebchevskii, Y.Zhi, D.Zhou, Y.Zhou, J.Zhu, Y.Zhu, S.C.Zugravel, N.Zurlo

System-size dependence of the hadronic rescattering effect at energies available at the CERN Large Hadron Collider

doi: 10.1103/PhysRevC.109.014911
Citations: PlumX Metrics


2022BA24      Europhys.Lett. 138, 44002 (2022)

A.K.Basak, A.C.Merchant, M.Freer, M.S.Islam, R.A.Ramon, M.Mizanur Rahman, A.S.B.Tariq, M.A.Uddin, A.Soylu

16O + 16O cluster states and their fusion to 32S: A non-monotonic potential description

NUCLEAR REACTIONS 16O(16O, X)32S, E=25-1120 MeV; analyzed available data; calculated σ, rotational constants, potential families, quasi-molecular states, bands, optical and nuclear models potentials.

doi: 10.1209/0295-5075/ac6c48
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2021IS08      J.Phys.(London) G48, 075109 (2021)

M.S.Islam, R.A.Ramon, M.Mizanur Rahman, R.Majumder, M.A.Sayed, A.Nilima, M.M.B.Azad, A.S.B.Tariq, M.A.Uddin, A.K.Basak

Nature of potential families from elastic 16O +16O rainbow scattering

NUCLEAR REACTIONS 16O(16O, 16O), E=75-1120 MeV; analyzed available data; deduced optical potential parameters, σ.

doi: 10.1088/1361-6471/abd88e
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2021IS12      J.Phys.(London) G48, 125108 (2021)

M.S.Islam, R.A.Ramon, M.M.Rahman, M.S.Islam, M.M.B.Azad, A.S.B.Tariq, M.A.Uddin, S.Ali, A.K.Basak

Primary rainbow and Airy minima in 12C + 12C elastic scattering with families of non-monotonic potentials

NUCLEAR REACTIONS 12C(12C, 12C), E=25-360 MeV; analyzed available data; deduced σ, optical model parameters within the framework of the optical model (OM) using non-monotonic (NM) nucleus-nucleus potential.

doi: 10.1088/1361-6471/ac2fb0
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2015DE11      Phys.Rev. C 91, 045804 (2015)

R.J.de Boer, D.W.Bardayan, J.Gorres, P.J.LeBlanc, K.V.Manukyan, M.T.Moran, K.Smith, W.Tan, E.Uberseder, M.Wiescher, P.F.Bertone, A.E.Champagne, M.S.Islam

Low energy scattering cross section ratios of 14N(p, p)14N

NUCLEAR REACTIONS 14N(p, p), E=1-4 MeV; measured E(p), I(p), σ(θ, E) at Notre Dame Van de Graaff accelerator facility. 15O; deduced levels, resonances, l-transfers, J, π, resonance parameters, widths. R-matrix analysis. Discussed relevance of proton scattering data for constraining astrophysically important capture rate analyses.

doi: 10.1103/PhysRevC.91.045804
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2160. Data from this article have been entered in the XUNDL database. For more information, click here.


2015HO06      Phys.Rev. C 91, 064613 (2015)

S.Hossain, A.S.B.Tariq, A.Nilima, M.S.Islam, R.Majumder, M.A.Sayed, M.M.Billah, M.M.B.Azad, M.A.Uddin, I.Reichstein, F.B.Malik, A.K.Basak

Dependence of the 16O+16O nuclear potential on nuclear incompressibility

NUCLEAR REACTIONS 16O(16O, 16O), E=31.0, 41.0, 49.0, 59.0, 75.0, 80.6, 87.2, 92.4, 94.8, 98.6, 103.1, 115.9, 124.0, 145.0, 250.0, 350.0 MeV; analyzed σ(E, θ) data in the optical model using Nonmonotonic (NM) nucleus-nucleus potentials from energy-density functional (EDF) theory, and for nuclear incompressibility in K=188-266 MeV range.

doi: 10.1103/PhysRevC.91.064613
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2015UD02      Radiochim.Acta 103, 85 (2015)

M.S.Uddin, N.Afroze, S.M.Hossain, A.K.M.Zakaria, M.A.Islam

Measurement of cross section of the 98Mo(n, γ)99Mo reaction using monochromatic thermal neutrons

NUCLEAR REACTIONS 98Mo(n, γ), E=0.0334, 0.0536 eV; measured reaction products, Eγ, Iγ; deduced σ. Comparison with JENDL-4 and ENDF/B-VII nuclear data libraries.

doi: 10.1515/ract-2014-2341
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2014AF01      Nucl.Instrum.Methods Phys.Res. B336, 1 (2014)

N.Afroze, M.S.Uddin, S.M.Hossain, M.A.Islam, M.A.Shariff, A.K.M.Zakaria, T.K.Datta, S.M.Azharul Islam

Experimental cross section of the 71Ga(n, γ)72Ga reaction at 0.0334 eV energy

NUCLEAR REACTIONS 71Ga(n, γ), E=0.0334 eV; measured reaction products, Eγ, Iγ; deduced σ. Comparison with JENDL-4.0, ENDF/B-VII.0, TENDL-2012 libraries.

doi: 10.1016/j.nimb.2014.06.016
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2014UD04      Radiochim.Acta 107, 583 (2014)

M.S.Uddin, N.Afroze, T.K.Datta, S.M.Hossain, A.K.M.Zakaria, M.A.Islam, K.Naher, M.A.Shariff, S.M.Yunus, S.M.A.Islam

Experimental cross section for the 152Sm(n, γ)153Sm reaction at 0.0334 eV

NUCLEAR REACTIONS 152,154Sm, 197Au(n, γ), E=0.0334 eV; measured reaction products, Eγ, Iγ; deduced σ. Comparison with experimental data, ENDF/B-VII and TENDL nuclear reaction libraries.

doi: 10.1515/ract-2013-2172
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2010CH01      Radiochim.Acta 98, 1 (2010)

M.H.Chowdhury, Md.S.Uddin, S.M.Hossain, Sk.A.Latif, M.A.Hafiz, M.A.Islam, A.K.M.Zakaria, S.M.Azharul Islam

Experimental cross section for the 139La(n, γ)140La reaction at 0.0536 eV

NUCLEAR REACTIONS 197Au, 139La(n, γ), E=0.0536 eV; measured Eγ, Iγ; deduced σ. Comparison with ENDF/B-VII.0 and JENDL-3.3 libraries.

doi: 10.1524/ract.2010.1686
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2008UD04      Appl.Radiat.Isot. 66, 1235 (2008)

M.S.Uddin, M.H.Chowdhury, S.M.Hossain, Sk.A.Latif, M.A.Hafiz, M.A.Islam, A.K.M.Zakaria, S.M.Azharul Islam

Neutron capture cross-section measurement for the 186W(n, γ)187W reaction at 0.0536 eV energy

NUCLEAR REACTIONS 186W(n, γ), E=0.0536 eV; measured Eγ, Iγ, cross section using activation technique. Compared results to model calculations.

doi: 10.1016/j.apradiso.2008.01.013
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2008UD05      Nucl.Instrum.Methods Phys.Res. B266, 3341 (2008)

M.S.Uddin, M.H.Chowdhury, S.M.Hossain, Sk.A.Latif, M.A.Hafiz, M.A.Islam, A.K.M.Zakaria, S.M.Yunus, S.M.Azharul Islam

Measurement of neutron capture cross-section of the 71Ga(n, γ)72Ga reaction at 0.0536 eV energy

NUCLEAR REACTIONS 71Ga(n, γ), E=0.0536 eV; measured Eγ, Iγ, cross section using activation technique.

doi: 10.1016/j.nimb.2008.04.019
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2008UD06      Nucl.Instrum.Methods Phys.Res. B266, 4855 (2008)

M.S.Uddin, M.H.Chowdhury, S.M.Hossain, Sk.A.Latif, M.A.Islam, M.A.Hafiz, S.H.Mubin, A.K.M.Zakaria, S.M.Yunus, S.M.Azharul Islam

Thermal neutron capture cross sections for the 152Sm(n, γ)153Sm and 154Sm(n, γ)155Sm reactions at 0.0536 eV energy

NUCLEAR REACTIONS 152,154Sm(n, γ), E=0.0536 eV; measured Eγ, Iγ, cross sections using activation technique. Compared results to evaluated databases.

doi: 10.1016/j.nimb.2008.07.032
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2005AB24      Nucl.Phys. A760, 40 (2005)

M.N.A.Abdullah, A.B.Idris, A.S.B.Tariq, M.S.Islam, S.K.Das, M.A.Uddin, A.S.Mondal, A.K.Basak, I.Reichstein, H.M.Sen Gupta, F.B.Malik

Potentials for the α- 40, 44, 48Ca elastic scattering

NUCLEAR REACTIONS 40,44,48Ca(α, α), E=10-180 MeV; analyzed σ(θ); deduced parameters. Non-monotonic and Squared Woods-Saxon α-nucleus potentials compared, dispersion effects discussed.

doi: 10.1016/j.nuclphysa.2005.05.149
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2005IS01      Phys.Lett. B 605, 115 (2005)

M.M.Islam, R.J.Luddy, A.V.Prokudin

pp elastic scattering at LHC in near forward direction

NUCLEAR REACTIONS 1H(p, X), (p-bar, X), E(cm) ≈ 5-100000 GeV; calculated total σ. 1H(p, p), E(cm)=546, 630, 1800, 14000 GeV; calculated σ(θ). Comparisons with data.

doi: 10.1016/j.physletb.2004.11.006
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2004RA23      Phys.Rev. C 70, 044318 (2004)

S.Raman, X.Ouyang, M.A.Islam, J.W.Starner, E.T.Jurney, J.E.Lynn, G.Martinez-Pinedo

Thermal-neutron capture by 58Ni, 59Ni, and 60Ni

NUCLEAR REACTIONS 58,59,60Ni(n, γ), E=thermal; measured Eγ, Iγ, σ. 59,60,61Ni deduced levels, J, π, neutron separation energies. Comparison with shell-model predictions.

doi: 10.1103/PhysRevC.70.044318
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2002HA14      Phys.Rev. C65, 034612 (2002)

C.Hautala, J.Rapaport, M.Palarczyk, D.L.Prout, D.A.Cooper, G.Savopulos, B.Anderson, A.Baldwin, C.C.Foster, C.D.Goodman, K.Hicks, R.Howes, M.S.Islam, B.A.Luther, D.M.Manley, R.Madey, E.Sugarbaker, T.N.Taddeucci, I.Van Heerden, J.Watson, X.Yang, W.-M.Zhang

Polarization Transfer in Quasifree (p(pol), n(pol)) Reactions on C, Ca, and Pb Targets at 197 MeV

NUCLEAR REACTIONS 12C, 40Ca, Pb(polarized p, n), E=197 MeV; measured polarization transfer coefficients, σ(E, θ). Comparison with model predictions.

doi: 10.1103/PhysRevC.65.034612
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2002OZ04      Nucl.Phys. A710, 469 (2002)

N.Ozkan, A.St.J.Murphy, R.N.Boyd, A.L.Cole, M.Famiano, R.T.Guray, M.Howard, L.Sahin, J.J.Zach, R.deHaan, J.Gorres, M.C.Wiescher, M.S.Islam, T.Rauscher

Cross section measurements of the 102Pd(p, γ)103Ag, 116Sn(p, γ)117Sb, and 112Sn(α, γ)116Te reactions relevant to the astrophysical rp- and γ-processes

NUCLEAR REACTIONS 102Pd, 116Sn(p, γ), E=2.6-4.25 MeV; 112Sn(α, γ), E=7.0-10.5 MeV; measured total σ; deduced astrophysical S-factors, reaction rates. Activation technique.

doi: 10.1016/S0375-9474(02)01134-X
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2002PR04      Phys.Rev. C65, 034611 (2002)

D.L.Prout, J.Rapaport, M.Palarczyk, D.A.Cooper, G.Savopulos, C.Hautala, B.Anderson, A.Baldwin, C.C.Foster, W.Gloeckle, C.D.Goodman, R.Howes, M.S.Islam, B.A.Luther, R.Madey, D.M.Manley, J.Sowinski, E.Sugarbaker, T.N.Taddeucci, I.Van Heerden, J.Watson, H.Witala, X.Yang, W.-M.Zhang

Polarization Transfer in Quasifree (p(pol), n(pol)) Reactions on 2H and 3, 4He Targets at 197 MeV

NUCLEAR REACTIONS 2H, 3,4He(polarized p, nX), E=197 MeV; measured polarization transfer coefficients, σ(E, θ). Comparison with model predictions.

doi: 10.1103/PhysRevC.65.034611
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1999PA03      Phys.Rev. C59, 500 (1999)

M.Palarczyk, J.Rapaport, C.Hautala, D.L.Prout, C.D.Goodman, I.J.van Heerden, J.Sowinski, G.Savopulos, X.Yang, H.M.Sages, R.Howes, R.Carr, M.Islam, E.Sugarbaker, D.C.Cooper, K.Lande, B.Luther, T.N.Taddeucci

Measurement of Gamow-Teller Strength for 127I as a Solar Neutrino Detector

NUCLEAR REACTIONS 127I(p, n), E=94, 159, 197 MeV; measured neutrons σ(E, θ=0°). 127Xe deduced IAS energy, Coulomb displacement energy, B(GT) vs excitation energy. 127I deduced solar neutrino capture σ.

doi: 10.1103/PhysRevC.59.500
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1998AN09      Nucl.Phys. A631, 752c (1998)

B.D.Anderson, D.L.Prout, M.Palarczyk, A.Ahmidouch, A.R.Baldwin, D.Cooper, C.C.Foster, W.Glockle, M.S.Islam, C.Hautala, K.Hicks, M.Khayat, B.Luther, R.Madey, D.M.Manley, I.Niculescu, J.Rapaport, G.Savopulos, J.Sowinski, E.R.Sugarbaker, R.Suleiman, I.Van Heerden, J.W.Watson, H.Witala, X.Yang, W.M.Zhang

Measurement of a Complete Set of Spin Observables in the 2H(p, n)2p Reaction at 200 MeV

NUCLEAR REACTIONS 2H(polarized p, n), E=200 MeV; measured σ(θ), spin observables. Three-body Fadeev calculations.

doi: 10.1016/S0375-9474(98)00104-3
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1995BA06      Nucl.Phys. A584, 315 (1995)

M.J.Balbes, M.M.Farrell, R.N.Boyd, X.Gu, M.Hencheck, J.D.Kalen, C.A.Mitchell, J.J.Kolata, K.Lamkin, R.Smith, R.Tighe, K.Ashktorab, F.D.Becchetti, J.Brown, D.Roberts, T.-F.Wang, D.Humphrey, G.Vourvopoulos, M.S.Islam

Cross Sections and Reaction Rates of d + 8Li Reactions Involved in Big Bang Nucleosynthesis

NUCLEAR REACTIONS 2H(8Li, 7Li), (8Li, 9Be), (8Li, 9Li), E=8-14 MeV; measured σ(E, θ); deduced reaction rates.

doi: 10.1016/0375-9474(94)00484-5
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1995GU02      Phys.Lett. 343B, 31 (1995)

X.Gu, R.N.Boyd, M.M.Farrell, J.D.Kalen, C.A.Mitchell, J.J.Kolata, M.Belbot, K.Lamkin, K.Ashktorab, F.D.Becchetti, J.Brown, D.Roberts, K.Kimura, I.Tanihata, K.Yoshida, M.S.Islam

The 8Li(α, n)11B Reaction and Primordial Nucleosynthesis

NUCLEAR REACTIONS, ICPND 4He(8Li, n), E(cm)=0.64-2.2 MeV; measured σ(E), astrophysical factor vs E.

doi: 10.1016/0370-2693(94)01480-Z
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1994IS06      J.Phys.(London) G20, 1471 (1994)

M.N.Islam, N.Siddiqua, A.K.Harun-ar-Rashid

Neutron Cross Sections for 56Fe and 238U, from 0.2 to 22 MeV Energy

NUCLEAR REACTIONS 238U, 56Fe(n, X), E ≤ 20 MeV; calculated σ(E). 238U, 56Fe(n, n), E ≤ 14 MeV; calculated σ(θ). Global optical potential sets.

doi: 10.1088/0954-3899/20/9/016
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1994IS08      At.Data Nucl.Data Tables 58, 245 (1994)

M.S.Islam, R.W.Finlay

Calculated Differential Elastic and Inelastic Neutron Scattering by 12C and 16O between 30 and 60 MeV

NUCLEAR REACTIONS 12C, 16O(n, n), (n, n'), E ≤ 60 MeV; analyzed data; deduced Legendre coefficient expansions applicable to transport, dosimetry, scintillator response calculations. DWBA.

doi: 10.1006/adnd.1994.1030
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1993BA57      Phys.Rev.Lett. 71, 3931 (1993)

M.J.Balbes, M.M.Farrell, R.N.Boyd, X.Gu, M.Hencheck, J.D.Kalen, C.A.Mitchell, J.J.Kolata, K.Lamkin, R.Smith, R.Tighe, K.Ashktorab, F.D.Becchetti, J.Brown, D.Roberts, T.-F.Wang, D.Humphrey, G.Vourvopoulos, M.S.Islam

2H Induced Reactions on 8Li and Primordial Nucleosynthesis

NUCLEAR REACTIONS, ICPND 2H(8Li, 7Li), (8Li, 8Be), E(cm)=2.4 MeV; 8Li(d, t), (d, n), E(cm)=1.5-2.75 MeV; measured σ(E); deduced primordial nucleosynthesis yields.

doi: 10.1103/PhysRevLett.71.3931
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1992WA04      Nucl.Phys. A536, 159 (1992)

T.F.Wang, R.N.Boyd, G.J.Mathews, M.L.Roberts, K.E.Sale, M.M.Farrell, M.S.Islam, G.W.Kolnicki

Measurement of the Half-Life of 20F

RADIOACTIVITY 20Ne [from 19F(d, p)20F(β-)20Ne(*)(γ)20Ne]; measured Iγ(t). 20F level deduced T1/2. Radioactive beam.

doi: 10.1016/0375-9474(92)90251-E
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1991IS01      Phys.Rev. C43, 1086 (1991)

M.A.Islam, T.J.Kennett, W.V.Prestwich

Radiative Strength Functions of Germanium from Thermal Neutron Capture

NUCLEAR REACTIONS Ge(n, γ), E=thermal; measured capture Eγ, Iγ. 71,73,74,75Ge deduced levels, average Γγ, level spacing, neutron separation energy, strength function. 74Ge levels deduced average B(E2).

doi: 10.1103/PhysRevC.43.1086
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1991IS05      Can.J.Phys. 69, 658 (1991)

M.A.Islam, T.J.Kennett, W.V.Prestwich

Thermal Neutron Capture γ-Ray Spectrum of Molybdenum and Ruthenium

NUCLEAR REACTIONS Ru, Mo(n, γ), E=thermal; measured Eγ, Iγ. 102,100Ru, 98Mo deduced levels, transition, neutron separation energies, M1 strength functions. 93,95,97,99Mo deduced levels, transition, neutron separation energies. 96Mo deduced levels, transition, neutron separation energies, M1 strength functions, B(λ).

doi: 10.1139/p91-110
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1991MO25      Nucl.Instrum.Methods Phys.Res. A309, 503 (1991)

R.Moreh, R.Fedorowicz, W.V.Prestwich, T.J.Kennett, M.A.Islam

A Strong Dynamic Neutron Source Based on the 209Bi(γ, n) Reaction

NUCLEAR REACTIONS 209Bi(γ, n), E=7.637, 7.915 MeV; measured photoneutron spectra; deduced resonance σ, dynamic neutron source possibility. 209Bi level deduced J, π, Γ.

doi: 10.1016/0168-9002(91)90255-O
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1990IS02      Phys.Rev. C41, 1272 (1990)

M.A.Islam, T.J.Kennett, W.V.Prestwich

Thermal neutron capture in silicon

NUCLEAR REACTIONS 28,29,30Si(n, γ), E=thermal; measured Eγ, Iγ, σ. 29,30,31Si deduced levels, neutron separation energy. Pair spectrometer, hyperpure Ge detector.

doi: 10.1103/PhysRevC.41.1272
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1990IS03      Z.Phys. A335, 173 (1990)

M.A.Islam, T.J.Kennett, W.V.Prestwich

A Study of the 127I(n, γ)128I Reaction

NUCLEAR REACTIONS 127I(n, γ), E=reactor; measured Eγ, Iγ. 128I deduced levels, possible J, π, electric, magnetic dipole strength, GDR contribution, neutron separation energy.


1990IS05      Nucl.Instrum.Methods Phys.Res. A287, 460 (1990)

M.A.Islam, T.J.Kennett, W.V.Prestwich

Re-Estimation of the Thermal Neutron Capture Cross Section of 14N

NUCLEAR REACTIONS 14N(n, γ), E=thermal; measured Eγ, Iγ; deduced capture σ. Carbon, Pb, Cl standards. 28,29,30Si(n, γ), E not given; analyzed data; deduced capture σ. Nitrogen standard.

doi: 10.1016/0168-9002(90)91564-R
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1990IS07      Phys.Rev. C42, 207 (1990)

M.A.Islam, T.J.Kennett, W.V.Prestwich

M1 and E2 Strength Functions of Barium from Thermal Neutron Capture

NUCLEAR REACTIONS Ba(n, γ), E=thermal; measured Eγ, Iγ; deduced Q-values. 136,138,139Ba deduced levels, M1, E2 strength functions.

doi: 10.1103/PhysRevC.42.207
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1990IS09      Can.J.Phys. 68, 1237 (1990)

M.A.Islam, T.J.Kennett, W.V.Prestwich

Thermal Neutron Capture γ-Ray Spectrum of Lanthanum

NUCLEAR REACTIONS 139La(n, γ), E=thermal; measured capture Eγ, Iγ. 140La deduced resonances, Iγ, electric dipole strength, neutron separation energy.

doi: 10.1139/p90-177
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1990RA16      Nucl.Phys. A515, 338 (1990)

D.P.Rath, R.N.Boyd, H.J.Hausman, M.S.Islam, G.W.Kolnicki

7Li(3He, p)9Be Reaction and Primordial Nucleosynthesis

NUCLEAR REACTIONS, ICPND 7Li(3He, p), E(cm)=0.5-2 MeV; measured σ(Ep, θ); deduced astrophysical S-factor, other quantities. Natural target.

doi: 10.1016/0375-9474(90)90371-R
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1990SA16      Phys.Rev. C41, 2418 (1990)

K.E.Sale, T.-F.Wang, R.N.Boyd, G.J.Mathews, D.W.Heikkinen, M.L.Roberts, M.S.Islam, P.B.Corn

Measurement of the Half-Life of 8Li

RADIOACTIVITY 8Li(β-); measured T1/2, Eα, Iα. Radioactive ion beam implanted in Si detector.

doi: 10.1103/PhysRevC.41.2418
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1989IS06      Nucl.Phys. A504, 367 (1989)

M.S.Islam, R.N.Boyd, P.B.Corn, D.P.Rath, X.Gu, G.W.Kolnicki

The 63Cu(α, p)66Zn Cross Section and the Corresponding Thermonuclear Reaction Rate

NUCLEAR REACTIONS, ICPND 63Cu(α, p), E=6-10 MeV; measured σ(E); deduced thermonuclear reaction rate. Statistical model.

doi: 10.1016/0375-9474(89)90351-5
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1988IS03      Phys.In Med.Biol. 33, 315 (1988)

M.S.Islam, R.W.Finlay, J.S.Petler, J.Rapaport, R.Alarcon, J.Wierzbicki

Neutron Scattering Cross Sections and Partial Kerma Values for Oxygen, Nitrogen and Calcium at 18 < En < 60 MeV

NUCLEAR REACTIONS 14N, 16O, 40Ca(n, n), (n, n'), E=18-60 MeV; measured σ(θ); deduced optical model parameters, partial kerma factors. Previously acquired data included in analysis.


1987IS04      Nucl.Phys. A464, 395 (1987)

M.S.Islam, R.W.Finlay, J.S.Petler

Elastic and Inelastic Scattering of Nucleons from 16O

NUCLEAR REACTIONS 16O(n, n), (n, n'), E=18-26 MeV; measured σ(θ). 16O(p, p), (p, p'), E=23.4-65.8 MeV; analyzed σ(θ); deduced elastic, inelastic contributions. DWBA, coupled-channels analyses.

doi: 10.1016/0375-9474(87)90307-1
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1986DE10      Phys.Rev. C33, 1826 (1986)

J.P.Delaroche, M.S.Islam, R.W.Finlay

Giant Resonance Coupling and l-Dependent Potentials for 16O

NUCLEAR REACTIONS 16O(n, n), (p, p), E=18-46 MeV; measured σ(E, θ); deduced giant resonance coupling, l-dependent potential effects. Natural target, coupled channel analysis.

doi: 10.1103/PhysRevC.33.1826
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1986IS10      J.Phys.(London) C19, 6673 (1986)

M.S.Islam

L(III) X-Ray Absorption Spectra of Some Dysprosium Compounds

ATOMIC PHYSICS Dy(X, X), E ≤ 130 eV; measured L X-ray absorption spectra; deduced effective charge influence on chemical shifts. Bent crystal spectrograph.

doi: 10.1088/0022-3719/19/33/016
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1985PE10      Phys.Rev. C32, 673 (1985)

J.S.Petler, M.S.Islam, R.W.Finlay, F.S.Dietrich

Microscopic Optical Model Analysis of Nucleon Scattering from Light Nuclei

NUCLEAR REACTIONS 13C(n, n), E=24 MeV; 14N(n, n), E=20, 25 MeV; 16O, 27Al(n, n), E=18-26 MeV; measured σ(θ) vs E; 12C(n, n), E=20-40 MeV; 12C(p, p), E=35-46 MeV; 14N(p, p), E=35.2 MeV; 16O(p, p), E=24.5, 30.1, 39.7 MeV; analyzed σ(θ). Micropscopic optical model.

doi: 10.1103/PhysRevC.32.673
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1984KE15      Phys.Rev. C30, 1840 (1984)

T.J.Kennett, M.A.Islam, W.V.Prestwich

Levels in 166Ho Deduced from the (n, γ) Reaction

NUCLEAR REACTIONS 165Ho(n, γ), E=reactor; measured Eγ, Iγ. 166Ho deduced levels, neutron separation energy, γ transition character.

doi: 10.1103/PhysRevC.30.1840
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1984PR03      Z.Phys. A315, 103 (1984)

W.V.Prestwich, M.A.Islam, T.J.Kennett

Primary E2 Transitions Observed following Neutron Capture for the Mass Region 144 ≤ A ≤ 180

NUCLEAR REACTIONS 143Nd, 162,164Dy, 165Ho, 167Er, 173Yb, 179Hf(n, γ), E=thermal; measured Eγ, Iγ. 144Nd, 163,165Dy, 166Ho, 168Er, 174Yb, 180Hf deduced E2 transition Γγ upper limits. Axel-Brink hypothesis based analysis.

doi: 10.1007/BF01436215
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1983IS04      Phys.Rev. C27, 2401 (1983)

M.A.Islam, W.V.Prestwich, T.J.Kennett

Possible Low-Lying Levels in 165Dy Deduced from Neutron Capture γ Rays

NUCLEAR REACTIONS 164Dy(n, γ), E=thermal; measured Eγ, Iγ. 165Dy deduced levels, possible J, π.

doi: 10.1103/PhysRevC.27.2401
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1983IS05      Z.Phys. A311, 195 (1983)

M.A.Islam, T.J.Kennett, W.V.Prestwich

A Probabilistic Model for Spectral Assignment in the (n, γ) Reaction

NUCLEAR REACTIONS 45Sc, 35Cl, 162,164Dy, 165Ho(n, γ), E not given; analyzed capture data; deduced γ-transition spectral assignment. Probabilistic model.

doi: 10.1007/BF01415105
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1982IS05      Phys.Rev. C25, 3184 (1982)

M.A.Islam, T.J.Kennett, W.V.Prestwich

Neutron Separation Energies of Some Heavy Nuclides

NUCLEAR REACTIONS 142,143,145Nd, 155,157Gd, 161,162,164Dy, 165Ho, 174,173Yb(n, γ), E=thermal; measured Eγ. 143,144,146Nd, 156,158Gd, 162,163,164,165Dy, 166Ho, 175,174Yb deduced neutron separation energy.

doi: 10.1103/PhysRevC.25.3184
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1981IS02      J.Phys.(London) G7, 371 (1981)

M.N.Islam, J.D.Kellie, G.I.Crawford

Cross Sections for the 27Al(n, n'γ) Reaction from near Threshold to 10.0 MeV

NUCLEAR REACTIONS 27Al(n, n'γ), E=0.9-10 MeV; measured σ(E, Eγ). Hauser-Feshbach analysis, Moldauer width fluctuation correction.

doi: 10.1088/0305-4616/7/3/012
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1981IS07      Nucl.Instrum.Methods 188, 243 (1981)

M.A.Islam, W.V.Prestwich, T.J.Kennett

Determination of the Thermal Radiative Capture Cross Section of 14N

NUCLEAR REACTIONS 14N(n, γ), E=thermal; measured Eγ, Iγ; deduced σ.

doi: 10.1016/0029-554X(81)90346-3
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset12718.


1981KE02      Can.J.Phys. 59, 93 (1981)

T.J.Kennett, M.A.Islam, W.V.Prestwich

An Investigation of the 35Cl(n, γ)36Cl Reaction

NUCLEAR REACTIONS 35Cl(n, γ), E=thermal; measured Eγ, Iγ; deduced Q. 36Cl deduced levels, γ-branching.

doi: 10.1139/p81-013
Citations: PlumX Metrics


1981KE03      Z.Phys. A299, 323 (1981)

T.J.Kennett, W.V.Prestwich, M.A.Islam

The Level Structure of 104Rh Deduced from the 103Rh(n, γ)104Rh Reaction

NUCLEAR REACTIONS 103Rh(n, γ), E=3700-7000 keV; measured Eγ, Iγ. 104Rh deduced levels, S(n), < Γγ >.

doi: 10.1007/BF01441275
Citations: PlumX Metrics


1981KE11      Can.J.Phys. 59, 1212 (1981)

T.J.Kennett, W.V.Prestwich, M.A.Islam

The Level Structure of 142Pr Deduced from the 141Pr(n, γ)142Pr Reaction

NUCLEAR REACTIONS 141Pr(n, γ), E=thermal; measured Eγ, Iγ. 142Pr deduced levels, dipole reduced widths, neutron separation energy.

doi: 10.1139/p81-159
Citations: PlumX Metrics


1981PR04      Nucl.Sci.Eng. 78, 182 (1981)

W.V.Prestwich, M.A.Islam, T.J.Kennett

A Determination of the Carbon Thermal Neutron Capture Cross Section

NUCLEAR REACTIONS C(n, γ), E=thermal; measured σ.

doi: 10.13182/NSE81-A20105
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset10997.


1980IS02      Can.J.Phys. 58, 168 (1980)

M.A.Islam, T.J.Kennett, S.A.Kerr, W.V.Prestwich

A Self-Consistent Set of Neutron Separation Energies

NUCLEAR REACTIONS 1H, 9Be, 14N, 24,25Mg, 27Al, 28,29Si, 32S, 35Cl, 40,44Ca, 47,48,49Ti, 50,52,53Cr, 55Mn, 54,56,57Fe(n, γ), E=thermal; measured Eγ, Iγ. 2H, 10Be, 25,26Mg, 28Al, 29,30Si, 33S, 36Cl, 41,45Ca, 48,49,50Ti, 51,53,54Cr, 56Mn, 55,57,58Fe deduced Q, neutron binding energy.

doi: 10.1139/p80-028
Citations: PlumX Metrics


1979AH06      Nucl.Sci.Eng. 71, 208 (1979)

S.Ahmad, M.M.Islam, A.H.Khan, M.Khaliquzzaman, M.Husain, M.A.Rahman

The Energy Dependence of Fission Fragment Anisotropy in Fast-Neutron-Induced Fission of Uranium-235

NUCLEAR REACTIONS 235U(n, F), E=0.3-1.4 MeV; measured σ(fragment, θ). 236U deduced pairing gap.

doi: 10.13182/NSE79-A20413
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset30520.


1977RA30      Nucl.Sci.Appl., Ser.B 10, 1 (1977)

M.Rahman, M.K.Islam

Photodisintegration of Alpha Particle

NUCLEAR REACTIONS 4He(γ, p), (γ, n); calculated σ. First-order perturbation theory, final-state interactions. Separable potentials.


1975AH09      Nucl.Sci.Appl. B8, 85 (1975)

E.Ahmad, M.H.A.Pramanik, M.N.Islam

Nuclear Properties and the Droplet Model

NUCLEAR STRUCTURE 12C, 16O, 24Mg, 28Si, 40Ca, 51V, 59Co, 115In, 122Sb, 195Pt, 197Au, 209Bi; calculated neutron skin thickness, particle binding energy. Droplet model.


1974SI21      Indian J.Phys. 48, 318 (1974)

A.K.M.Siddiq, A.Awal, A.K.Khan, M.M.Islam, F.Rahman, Sanaullah

Ericson Fluctuations in the Cross-Section of 28Si(n, α)25Mg Reaction

NUCLEAR REACTIONS 28Si(n, α), E=12.6-17.8 MeV; measured σ(E, Eα, θ). 25Mg deduced levels, J, level-width, T1/2.

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset30294.


1973AL30      Nucl.Sci.Appl., Ser.B 6, 45 (1973)

F.Ali, A.K.M.Siddiq, M.Islam, F.Rahman, Sanaullah

(n, α) Reaction in 28Si, 54Fe and 197Au

NUCLEAR REACTIONS 28Si(n, α), E=16.29, 17.145 MeV; 54Fe, 197Au(n, α), E=16.43 MeV; measured σ(Eα). 25Mg, 51Cr, 194Ir deduced levels.


1973IS01      Nucl.Sci.Eng. 50, 108 (1973)

M.M.Islam, H.-H.Knitter

The Energy Spectrum of Prompt Neutrons from the Fission of Uranium-235 By 0.40-MeV Neutrons

NUCLEAR REACTIONS 235U(n, F);E=0.4 MeV; measured E(fission neutrons), I(fission neutrons); deduced average neutron energy.

doi: 10.13182/NSE73-A23234
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset20385.


1973KE09      Nucl.Phys. A208, 525 (1973)

J.D.Kellie, M.N.Islam, G.I.Crawford

Inelastic Neutron Scattering by 56Fe and 31P in the Energy Range 0.8 to 9.0 MeV

NUCLEAR REACTIONS 56Fe(n, n'γ), E=0.8-9.0 MeV; measured σ(E, Eγ). 31P(n, n'γ), E=1.27-9.0 MeV; measured σ(E;Eγ).

doi: 10.1016/0375-9474(73)90672-6
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset20537.


1973KN07      Atomkernenergie 22, 84 (1973)

H.-H.Knitter, A.Paulsen, H.Liskien, M.M.Islam

Measurements of the Neutron Energy Spectrum of the Spontaneous Fission Of 252Cf

RADIOACTIVITY, Fission 252Cf(SF); measured En.

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset20401.


1972KE15      J.Phys.(London) A5, 1090 (1972)

J.D.Kellie, M.N.Islam, D.B.C.B.Syme, G.I.Crawford

Neutron Total Cross Section of 31P between 0.75 MeV and 9.00 MeV

NUCLEAR REACTIONS 31P(n, X), E=0.75-9.00 MeV; measured σ(nT)(E).

doi: 10.1088/0305-4470/5/7/017
Citations: PlumX Metrics


1972KN06      Z.Phys. 257, 108 (1972)

H.-H.Knitter, M.M.Islam, M.Coppola

Investigation of Fast Neutron Interaction with 235U

NUCLEAR REACTIONS 235U(n, n), (n, n'), (n, F), E=1.5, 1.9, 2.3, 4.0, 4.5, 5.0, 5.5 MeV; measured σ(θ(n)).

doi: 10.1007/BF01403542
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset20394.


1967BL07      Nucl.Phys. A92, 365(1967)

J.L.Black, M.M.Islam, G.A.Jones, G.C.Morrison, R.B.Taylor

Isobaric Analogues of States in 90Y

NUCLEAR REACTIONS 89Y(p, γ), E = 5-8.5 MeV; 89Y(p, n), 89Y(p, p'), E = 5-6.5 MeV; measured excitation functions. 90Zr deduced isobaric analog states. Natural target.

doi: 10.1016/0375-9474(67)90224-2
Citations: PlumX Metrics


1967SI15      Nucl.Sci.Appl. 3, No.2, 70 (1967)

A.K.M.Siddiq, Afsaruddin, N.Islam, I.Yunus, M.M.Islam

Gamma-Rays Following Neutron Inelastic Scattering from V51

NUCLEAR STRUCTURE 51V; measured not abstracted; deduced nuclear properties.


1966BL07      Nucl.Phys. 79, 65(1966)

J.L.Black, W.Darcey, M.M.Islam

The Energy Levels of 90Y

NUCLEAR REACTIONS 89Y(d, p), E=11.95 MeV; measured σ(Ep, θ, p). 90Y deduced levels, J, π, L. Natural target. 92Zr(d, α), E=12.0 MeV; measured σ(Eα). 90Y deduced levels. Enriched target.

doi: 10.1016/0029-5582(66)90392-0
Citations: PlumX Metrics


1965IS05      Nucl.Phys. 70, 236 (1965)

M.M.Islam, P.B.Treacy

The First Excited State of B9

NUCLEAR REACTIONS 12C(p, α), (p, p'), E = 13 MeV; measured σ(Eα, θ(α)), σ(Ep', θ p'). 9B deduced levels. Natural target.

doi: 10.1016/0029-5582(65)90239-7
Citations: PlumX Metrics


1960AL31      Phys.Rev. 120, 1851 (1960)

M.L.Ali, A.Hossain, M.Islam, A.Q.Sarker

Elastic Scattering of Protons by He3 and of Neutrons by H3

doi: 10.1103/PhysRev.120.1851
Citations: PlumX Metrics


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Note: The following list of authors and aliases matches the search parameter M.Islam: , M.A.ISLAM, M.K.ISLAM, M.M.ISLAM, M.N.ISLAM, M.S.ISLAM