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NSR database version of April 27, 2024.

Search: Author = D.P.Mahapatra

Found 12 matches.

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2018DA07      Eur.Phys.J. A 54, 55 (2018)

S.Dash, D.P.Mahapatra

pT spectra in pp and AA collisions at RHIC and LHC energies using the Tsallis-Weibull approach

doi: 10.1140/epja/i2018-12487-4
Citations: PlumX Metrics


2018MO02      Astrophys.J.Suppl.Ser. 234, 14 (2018)

A.Moradmand, M.O.A.El Ghazaly, D.P.Mahapatra, A.Chutjian

Measurement of Absolute Single and Double Charge Exchange Cross Sections for Si(7-10)+ at 0.88-2.50 KeV/u Impacting He and H2

NUCLEAR REACTIONS H, He(28Si, e), (28Si, 2e), E=0.88-2.50 keV/nucleon; measured reaction products; deduced total, absolute, single, and double charge-exchange (CE) σ of solar wind. Comparison with available data.

doi: 10.3847/1538-4365/aaa02c
Citations: PlumX Metrics


2013AG03      Nucl.Phys. A898, 14 (2013)

M.M.Aggarwal, Z.Ahammed, A.L.S.Angelis, V.Antonenko, V.Arefiev, V.Astakhov, V.Avdeitchikov, T.C.Awes, P.V.K.S.Baba, S.K.Badyal, S.Bathe, B.Batiounia, C.Baumann, T.Bernier, K.B.Bhalla, V.S.Bhatia, C.Blume, D.Bucher, H.Busching, L.Carlen, S.Chattopadhyay, M.P.Decowski, H.Delagrange, P.Donni, M.R.Dutta Majumdar, K.El Chenawi, A.K.Dubey, K.Enosawa, S.Fokin, V.Frolov, M.S.Ganti, S.Garpman, O.Gavrishchuk, F.J.M.Geurts, T.K.Ghosh, R.Glasow, B.Guskov, H.A.Gustafsson, H.H.Gutbrod, I.Hrivnacova, M.Ippolitov, H.Kalechofsky, R.Kamermans, K.Karadjev, K.Karpio, B.W.Kolb, I.Kosarev, I.Koutcheryaev, A.Kugler, P.Kulinich, M.Kurata, A.Lebedev, H.Lohner, L.Luquin, D.P.Mahapatra, V.Manko, M.Martin, G.Martinez, A.Maximov, Y.Miake, G.C.Mishra, B.Mohanty, M.-J.Mora, D.Morrison, T.Mukhanova, D.S.Mukhopadhyay, H.Naef, B.K.Nandi, S.K.Nayak, T.K.Nayak, A.Nianine, V.Nikitine, S.Nikolaev, P.Nilsson, S.Nishimura, P.Nomokonov, J.Nystrand, A.Oskarsson, I.Otterlund, S.Pavliouk, T.Peitzmann, D.Peressounko, V.Petracek, S.C.Phatak, W.Pinganaud, F.Plasil, M.L.Purschke, J.Rak, M.Rammler, R.Raniwala, S.Raniwala, N.K.Rao, F.Retier, K.Reygers, G.Roland, L.Rosselet, I.Roufanov, C.Roy, J.M.Rubio, S.S.Sambyal, R.Santo, S.Sato, H.Schlagheck, H.-R.Schmidt, Y.Schutz, G.Shabratova, T.H.Shah, I.Sibiriak, T.Siemiarczuk, D.Silvermyr, B.C.Sinha, N.Slavine, K.Soderstrom, G.Sood, S.P.Sorensen, P.Stankus, G.Stefanek, P.Steinberg, E.Stenlund, M.Sumbera, T.Svensson, A.Tsvetkov, L.Tykarski, E.C.v.d.Pijll, N.v.Eijndhoven, G.J.v.Nieuwenhuizen, A.Vinogradov, Y.P.Viyogi, A.Vodopianov, S.Voros, B.Wyslouch, G.R.Young

Photon and η production in p + Pb and p + C collisions at √ sNN=17.4 GeV

doi: 10.1016/j.nuclphysa.2012.11.010
Citations: PlumX Metrics


2002MO33      Phys.Rev. C66, 044901 (2002)

B.Mohanty, D.P.Mahapatra, T.K.Nayak

Fluctuation probe of disoriented chiral condensates

doi: 10.1103/PhysRevC.66.044901
Citations: PlumX Metrics


1999NA30      Phys.Lett. 461B, 142 (1999)

B.K.Nandi, T.K.Nayak, B.Mohanty, D.P.Mahapatra, Y.P.Viyogi

Localized Domains of Disoriented Chiral Condensates

doi: 10.1016/S0370-2693(99)00770-4
Citations: PlumX Metrics


1996MI21      Phys.Rev. A53, 2309 (1996)

D.Mitra, M.Sarkar, D.Bhattacharya, M.B.Chatterjee, P.Sen, G.Kuri, D.P.Mahapatra, G.Lapicki

L3-Subshell Alignment in Gold and Bismuth Induced by Low-Velocity Carbon Ions

NUCLEAR REACTIONS 197Au, 209Bi(C, X), E=3-9 MeV; measured I(L X-ray)(θ); deduced IS coupling role. Standard perturbed-stationary-state theory, energy-loss, Coulomb deflection, relativistic corrections included.

ATOMIC PHYSICS 197Au, 209Bi(C, X), E=3-9 MeV; measured I(L X-ray)(θ); deduced IS coupling role. Standard perturbed-stationary-state theory, energy-loss, Coulomb deflection, relativistic corrections included.

doi: 10.1103/PhysRevA.53.2309
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1996PA37      Z.Phys. A356, 281 (1996)

J.Pal, C.C.Dey, S.Bose, B.K.Sinha, M.B.Chatterjee, D.P.Mahapatra

0+ Analogue State in 118Sb from 117Sn(p, nγ) Reaction

NUCLEAR REACTIONS, ICPND 117Sn(p, n), E=4.401-5.545 MeV; measured Eγ, Iγ, σ(E). 118Sb deduced IAR, J, π, (ΓpΓn)/Γ, Γn. Hauser-Feshbach formalism.

doi: 10.1007/s002180050180
Citations: PlumX Metrics


1995MI10      Phys.Lett. 348B, 297 (1995)

G.C.Mishra, B.K.Nandi, S.K.Nayak, D.P.Mahapatra

Some Interesting Observations Regarding Factorial Moments and Generalized Moments in Intermittency Analysis

doi: 10.1016/0370-2693(95)00143-9
Citations: PlumX Metrics


1995SA62      Nucl.Instrum.Methods Phys.Res. A103, 23 (1995)

M.Sarkar, D.Bhattacharya, M.B.Chatterjee, P.Sen, G.Kuri, D.P.Mahapatra, G.Lapicki

Importance of Subshell Coupling in L-Shell Ionization by Low-Velocity Heavy Ions

NUCLEAR STRUCTURE Z=46-92; compiled, analyzed L-subshell ionization σ data for slow ions (Z=6-8); deduced intra-shell coupling inclusion role. ECPSSR theory.

ATOMIC PHYSICS Z=46-92; compiled, analyzed L-subshell ionization σ data for slow ions (Z=6-8); deduced intra-shell coupling inclusion role. ECPSSR theory.

doi: 10.1016/0168-583X(95)00516-1
Citations: PlumX Metrics


1994BH09      Phys.Rev. A49, 4616 (1994)

D.Bhattacharya, M.Sarkar, M.B.Chatterjee, P.Sen, G.Kuri, D.P.Mahapatra, G.Lapicki

L-Subshell Ionization Cross Sections in Gold and Bismuth by 3.6-9.5-MeV Carbon and 4.0-7.2-MeV Oxygen Ions

NUCLEAR REACTIONS 197Au, 209Bi(C, X), (O, X), E=0.25-0.79 MeV/nucleon; measured L-subshell ionization σ. Model comparison.

ATOMIC PHYSICS 197Au, 209Bi(C, X), (O, X), E=0.25-0.79 MeV/nucleon; measured L-subshell ionization σ. Model comparison.

doi: 10.1103/PhysRevA.49.4616
Citations: PlumX Metrics


1994PA19      Phys.Rev. C50, 99 (1994)

J.Pal, C.C.Dey, S.Bose, B.K.Sinha, M.B.Chatterjee, D.P.Mahapatra

Decay of 0+ Analogue State of 120Sb

NUCLEAR REACTIONS 119Sn(p, nγ), E=4.529-5.553 MeV; measured Eγ, Iγ, σ(E). 119Sb deduced levels, J. 120Sb deduced 0+ analog state, Γ, Γn, decay features. Hyperpure Ge detectors.

doi: 10.1103/PhysRevC.50.99
Citations: PlumX Metrics


1992SE11      Nucl.Instrum.Methods Phys.Res. B71, 308 (1992)

K.Sekar, P.V.Satyam, G.Kuri, D.P.Mahapatra, B.N.Dev

An RBS Study on the Annealing Behaviour of Cu Thin Films on Brominated Si(111) and Si(100) Substrates

NUCLEAR REACTIONS Si, Cu(α, α), E=2 MeV; measured Rutherford backscattered spectra; deduced Si(111), (100) substrates interdiffusion temperature dependence.

doi: 10.1016/0168-583X(92)95402-D
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