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NSR database version of April 11, 2024.

Search: Author = D.W.Higinbotham

Found 48 matches.

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2024HA03      Eur.Phys.J. A 60, 1 (2024)

T.J.Hague, D.W.Higinbotham, S.Portuese

Direct comparison of using a Z-transformation instead of the traditional Q2 for extraction of the proton radius from e-p scattering data

NUCLEAR STRUCTURE 1H; analyzed available data; deduced proton's charge radius and form factor by examining the mathematical bias and variances introduced by this technique as compared to the more traditional Q2 fits using statistically sampled GpE parameterizations with known input radii.

doi: 10.1140/epja/s10050-023-01227-w
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2023VA05      Phys.Rev. C 107, 065203 (2023)

H.Valenty, J.Rittenhouse West, F.Benmokhtar, D.W.Higinbotham, A.Parker, E.Seroka

Physical implications of the extrapolation and statistical bootstrap of nucleon structure function ratios Fn2 over Fp2 for mirror nuclei 3He and 3H

doi: 10.1103/PhysRevC.107.065203
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2022HA08      Phys.Rev. C 105, 034001 (2022)

F.Hauenstein, A.Jentsch, J.R.Pybus, A.Kiral, M.D.Baker, Y.Furletova, O.Hen, D.W.Higinbotham, C.Hyde, V.Morozov, D.Romanov, L.B.Weinstein

Measuring recoiling nucleons from the nucleus with the future Electron Ion Collider

doi: 10.1103/PhysRevC.105.034001
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2022NG02      Phys.Lett. B 831, 137165 (2022)

D.Nguyen, C.Neuburger, R.Cruz-Torres, A.Schmidt, D.W.Higinbotham, J.Kahlbow, P.Monaghan, E.Piasetzky, O.Hen

Search for a bound di-neutron by comparing 3He(e, e'p)d and 3H(e, e'p)X measurements

NUCLEAR REACTIONS 3He, 3H(e-, e-'p), E=4.326 GeV; measured reaction products, Eβ, Iβ. 2NN; deduced exclusion limits for a bound dineutron state as a function of binding energy.

doi: 10.1016/j.physletb.2022.137165
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2022SU03      Prog.Theor.Exp.Phys. 2022, 013D01 (2022)

K.N.Suzuki, T.Gogami, B.Pandey, K.Itabashi, S.Nagao, K.Okuyama, S.N.Nakamura, L.Tang, D.Abrams, T.Akiyama, D.Androic, K.Aniol, C.Ayerbe Gayoso, J.Bane, S.Barcus, J.Barrow, V.Bellini, H.Bhatt, D.Bhetuwal, D.Biswas, A.Camsonne, J.Castellanos, J.-P.Chen, J.Chen, S.Covrig, D.Chrisman, R.Cruz-Torres, R.Das, E.Fuchey, K.Gnanvo, F.Garibaldi, T.Gautam, J.Gomez, P.Gueye, T.J.Hague, O.Hansen, W.Henry, F.Hauenstein, D.W.Higinbotham, C.E.Hyde, M.Kaneta, C.Keppel, T.Kutz, N.Lashley-Colthirst, S.Li, H.Liu, J.Mammei, P.Markowitz, R.E.McClellan, F.Meddi, D.Meekins, R.Michaels, M.Mihovilovic, A.Moyer, D.Nguyen, M.Nycz, V.Owen, C.Palatchi, S.Park, T.Petkovic, S.Premathilake, P.E.Reimer, J.Reinhold, S.Riordan, V.Rodriguez, C.Samanta, S.N.Santiesteban, B.Sawatzky, S.Sirca, K.Slifer, T.Su, Y.Tian, Y.Toyama, K.Uehara, G.M.Urciuoli, D.Votaw, J.Williamson, B.Wojtsekhowski, S.A.Wood, B.Yale, Z.Ye, J.Zhang, X.Zheng

The cross-section measurement for the 3H(e, e'K+)nnΛ reaction

NUCLEAR REACTIONS 3H(e-, e-'K+), E not given; measured reaction products; deduced σ(θ), missing mass. Comparison with Monte Carlo simulations.

doi: 10.1093/ptep/ptab158
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2022ZH72      Phys.Rev. C 106, 065505 (2022)

J.Zhou, V.Khachatryan, H.Gao, S.Gorbaty, D.W.Higinbotham

Understanding the systematic differences in extractions of the proton electric form factors at low Q2

NUCLEAR REACTIONS 1H(e, e), Q2=0.5(GeV/c)2; analyzed σ data from Mainz A1 Collaboration and PRad collaboration at Jefferson Lab; deduced electric and magnetic proton form factor. Investigated the difference between results coming from 2 different experiments with use of analytically well behaved rational function.

doi: 10.1103/PhysRevC.106.065505
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2021AC08      Eur.Phys.J. A 57, 261 (2021)

A.Accardi, A.Afanasev, I.Albayrak, S.F.Ali, M.Amaryan, J.R.M.Annand, J.Arrington, A.Asaturyan, H.Atac, H.Avakian, T.Averett, C.Ayerbe Gayoso, X.Bai, L.Barion, M.Battaglieri, V.Bellini, R.Beminiwattha, F.Benmokhtar, V.V.Berdnikov, J.C.Bernauer, V.Bertone, A.Bianconi, A.Biselli, P.Bisio, P.Blunden, M.Boer, M.Bondi, K.-T.Brinkmann, W.J.Briscoe, V.Burkert, T.Cao, A.Camsonne, R.Capobianco, L.Cardman, M.Carmignotto, M.Caudron, L.Causse, A.Celentano, P.Chatagnon, J.-P.Chen, T.Chetry, G.Ciullo, E.Cline, P.L.Cole, M.Contalbrigo, G.Costantini, A.D'Angelo, L.Darme, D.Day, M.Defurne, M.De Napoli, A.Deur, R.De Vita, N.D'Hose, S.Diehl, M.Diefenthaler, B.Dongwi, R.Dupre, H.Dutrieux, D.Dutta, M.Ehrhart, L.El Fassi, L.Elouadrhiri, R.Ent, J.Erler, I.P.Fernando, A.Filippi, D.Flay, T.Forest, E.Fuchey, S.Fucini, Y.Furletova, H.Gao, D.Gaskell, A.Gasparian, T.Gautam, F.-X.Girod, K.Gnanvo, J.Grames, G.N.Grauvogel, P.Gueye, M.Guidal, S.Habet, T.J.Hague, D.J.Hamilton, O.Hansen, D.Hasell, M.Hattawy, D.W.Higinbotham, A.Hobart, T.Horn, C.E.Hyde, H.Ibrahim, A.Ilyichev, A.Italiano, K.Joo, S.J.Joosten, V.Khachatryan, N.Kalantarians, G.Kalicy, B.Karky, D.Keller, C.Keppel, M.Kerver, M.Khandaker, A.Kim, J.Kim, P.M.King, E.Kinney, V.Klimenko, H.-S.Ko, M.Kohl, V.Kozhuharov, B.T.Kriesten, G.Krnjaic, V.Kubarovsky, T.Kutz, L.Lanza, M.Leali, P.Lenisa, N.Liyanage, Q.Liu, S.Liuti, J.Mammei, S.Mantry, D.Marchand, P.Markowitz, L.Marsicano, V.Mascagna, M.Mazouz, M.McCaughan, B.McKinnon, D.McNulty, W.Melnitchouk, A.Metz, Z.-E.Meziani, S.Migliorati, M.Mihovilovic, R.Milner, A.Mkrtchyan, H.Mkrtchyan, A.Movsisyan, H.Moutarde, M.Muhoza, C.Munoz Camacho, J.Murphy, P.Nadel-Turonski, E.Nardi, J.Nazeer, S.Niccolai, G.Niculescu, R.Novotny, J.F.Owens, M.Paolone, L.Pappalardo, R.Paremuzyan, B.Pasquini, E.Pasyuk, T.Patel, I.Pegg, C.Peng, D.Perera, M.Poelker, K.Price, A.J.R.Puckett, M.Raggi, N.Randazzo, M.N.H.Rashad, M.Rathnayake, B.Raue, P.E.Reimer, M.Rinaldi, A.Rizzo, Y.Roblin, J.Roche, O.Rondon-Aramayo, F.Sabatie, G.Salme, E.Santopinto, R.Santos Estrada, B.Sawatzky, A.Schmidt, P.Schweitzer, S.Scopetta, V.Sergeyeva, M.Shabestari, A.Shahinyan, Y.Sharabian, S.Sirca, E.S.Smith, D.Sokhan, A.Somov, N.Sparveris, M.Spata, H.Spiesberger, M.Spreafico, S.Stepanyan, P.Stoler, I.Strakovsky, R.Suleiman, M.Suresh, P.Sznajder, H.Szumila-Vance, V.Tadevosyan, A.S.Tadepalli, A.W.Thomas, M.Tiefenback, R.Trotta, M.Ungaro, P.Valente, M.Vanderhaeghen, L.Venturelli, H.Voskanyan, E.Voutier, B.Wojtsekhowski, M.H.Wood, S.Wood, J.Xie, W.Xiong, Z.Ye, M.Yurov, H.-G.Zaunick, S.Zhamkochyan, J.Zhang, S.Zhang, S.Zhao, Z.W.Zhao, X.Zheng, J.Zhou, C.Zorn

An experimental program with high duty-cycle polarized and unpolarized positron beams at Jefferson Lab

doi: 10.1140/epja/s10050-021-00564-y
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2021GA33      Eur.Phys.J. A 57, 342 (2021)

C.A.Gayoso, L.Bibrzycki, S.Diehl, S.Heppelmann, D.W.Higinbotham, G.M.Huber, S.J.D.Kay, S.R.Klein, J.M.Laget, W.B.Li, V.Mathieu, K.Park, R.J.Perry, B.Pire, K.Semenov-Tian-Shansky, A.Stanek, J.R.Stevens, L.Szymanowski, C.Weiss, B.-G.Yu

Progress and opportunities in backward angle (u-channel) physics

doi: 10.1140/epja/s10050-021-00625-2
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2021HA26      Eur.Phys.J. A 57, 199 (2021)

T.J.Hague, D.Dutta, D.W.Higinbotham, X.Bai, H.Gao, A.Gasparian, K.Gnanvo, V.Khachatryan, M.Khandaker, N.Liyanage, E.Pasyuk, C.Peng, W.Xiong, J.Zhou

Elastic positron-proton scattering at low Q2

doi: 10.1140/epja/s10050-021-00508-6
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2021SE13      Phys. Rev. Res. 3, 023240 (2021)

E.P.Segarra, J.R.Pybus, F.Hauenstein, D.W.Higinbotham, G.A.Miller, E.Piasetzky, A.Schmidt, M.Strikman, L.B.Weinstein, O.Hen

Short-range correlations and the nuclear EMC effect in deuterium and helium-3

NUCLEAR STRUCTURE 2H, 3He; calculated modification of the partonic structure of nucleons bound in atomic nuclei also known as the EMC effect using a convolution formalism that allows isolating the impact of high-momentum nucleons in short-ranged correlated (SRC) pairs.

doi: 10.1103/PhysRevResearch.3.023240
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2021SU25      Nat.Phys. 17, 687 (2021), Erratum Nat.Phys. 18, 473 (2022)

V.Sulkosky, C.Peng, J.Chen, A.Deur, S.Abrahamyan, K.A.Aniol, D.S.Armstrong, T.Averett, S.L.Bailey, A.Beck, P.Bertin, F.Butaru, W.Boeglin, A.Camsonne, G.D.Cates, C.-C.Chang, S.Choi, E.Chudakov, L.Coman, J.C.Cornejo, B.Craver, F.Cusanno, R.De Leo, C.W.de Jager, J.D.Denton, S.Dhamija, R.Feuerbach, J.M.Finn, S.Frullani, K.Fuoti, H.Gao, F.Garibaldi, O.Gayou, R.Gilman, A.Glamazdin, C.Glashausser, J.Gomez, J.-O.Hansen, D.Hayes, F.W.Hersman, D.W.Higinbotham, T.Holmstrom, T.B.Humensky, C.E.Hyde, H.Ibrahim, M.Iodice, X.Jiang, L.J.Kaufman, A.Kelleher, K.E.Keister, W.Kim, A.Kolarkar, N.Kolb, W.Korsch, K.Kramer, G.Kumbartzki, L.Lagamba, V.Laine, G.Laveissiere, J.J.Lerose, D.Lhuillier, R.Lindgren, N.Liyanage, H.-J.Lu, B.Ma, D.J.Margaziotis, P.Markowitz, K.R.McCormick, M.Meziane, Z.-E.Meziani, R.Michaels, B.Moffit, P.Monaghan, S.Nanda, J.Niedziela, M.Niskin, R.Pandolfi, K.D.Paschke, M.Potokar, A.Puckett, V.A.Punjabi, Y.Qiang, R.D.Ransome, B.Reitz, R.Roche, A.Saha, A.Shabetai, S.Sirca, J.T.Singh, K.Slifer, R.Snyder, P.Solvignon, R.Stringer, R.Subedi, W.A.Tobias, N.Ton, P.E.Ulmer, G.M.Urciuoli, A.Vacheret, E.Voutier, K.Wang, L.Wan, B.Wojtsekhowski, S.Woo, H.Yao, J.Yuan, X.Zhan, X.Zheng, L.Zhu

Measurement of the generalized spin polarizabilities of the neutron in the low-Q2 region

NUCLEAR REACTIONS 3He(polarized e-, e-), E=1.1-4.4 GeV; measured reaction products, Eβ, Iβ. 1NN; deduced transverse-transverse and longitudinal-transverse interference σ, generalized neutron spin polarizabilities. Comparison with chiral effective field theory calculations.

doi: 10.1038/s41567-021-01245-9
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2021ZH15      Phys.Rev. C 103, 024002 (2021)

J.Zhou, V.Khachatryan, H.Gao, D.W.Higinbotham, A.Parker, X.Bai, D.Dutta, A.Gasparian, K.Gnanvo, M.Khandaker, N.Liyanage, E.Pasyuk, C.Peng, W.Xiong

Advanced extraction of the deuteron charge radius from electron-deuteron scattering data

NUCLEAR REACTIONS 2H(e-, e-), E=1.1, 2.2 GeV; analyzed experimental data from PRad collaboration at Jefferson Lab using deuteron form factors, and fitting of pseudo-data generation from four smeared Abbott1, Abbott2, Parker, and SOG models, pseudo-data fitting. 2H; deduced charge radius.

doi: 10.1103/PhysRevC.103.024002
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2020AL14      Phys.Rev. C 102, 035203 (2020)

J.M.Alarcon, D.W.Higinbotham, C.Weiss

Precise determination of the proton magnetic radius from electron scattering data

NUCLEAR REACTIONS 1H(e-, e-), E=0.180-0.855 GeV; analyzed experimental data from Mainz using dispersion analysis and chiral effective field theory (DIχEFT) with parameters from best fit; deduced electric and magnetic radii, magnetic radius of proton. Comparison with experimental results from Mainz A1 and earlier world data.

doi: 10.1103/PhysRevC.102.035203
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2020BA36      Phys.Rev. C 102, 015205 (2020)

S.K.Barcus, D.W.Higinbotham, R.E.McClellan

How analytic choices can affect the extraction of electromagnetic form factors from elastic electron scattering cross section data

NUCLEAR REACTIONS 1H(e, e), E=180, 315, 450, 585, 720, 855 MeV; analyzed Mainz experimental σ(E) data with 1422 cross section points and 31 normalization parameters using different regression algorithms with theory-motivated constraints, and fit with unbound and bound polynomials, and different binning choices; deduced total χ2, electromagnetic form factors. 1H; deduced proton charge radius, and proton electric form factor. Comparison with CODATA-2014 value.

doi: 10.1103/PhysRevC.102.015205
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2020PY01      Phys.Lett. B 805, 135429 (2020)

J.R.Pybus, I.Korover, R.Weiss, A.Schmidt, N.Barnea, D.W.Higinbotham, E.Piasetzky, M.Strikman, L.B.Weinstein, O.Hen

Generalized contact formalism analysis of the 4He(e, e'pN) reaction

NUCLEAR REACTIONS 4He(e-, X), E not given; analyzed available data; deduced that kinematic distributions, such as the reconstructed pair opening angle, recoil neutron momentum distribution, and pair center of mass motion, as well as the measured missing energy, missing mass distributions, are all well reproduced by the Generalized Contact Formalism (GCF) calculations.

doi: 10.1016/j.physletb.2020.135429
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2019AL13      Phys.Rev. C 99, 044303 (2019)

J.M.Alarcon, D.W.Higinbotham, C.Weiss, Z.Ye

Proton charge radius extraction from electron scattering data using dispersively improved chiral effective field theory

NUCLEAR REACTIONS 1H(e, e), E not given; analyzed proton charge radius of 0.844(7) fm using measured elastic cross sections with a theoretical framework combining chiral effective field theory and dispersion analysis.

doi: 10.1103/PhysRevC.99.044303
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2018YA16      Phys.Rev. C 98, 025204 (2018)

X.Yan, D.W.Higinbotham, D.Dutta, H.Gao, A.Gasparian, M.A.Khandaker, N.Liyanage, E.Pasyuk, C.Peng, W.Xiong

Robust extraction of the proton charge radius from electron-proton scattering data

doi: 10.1103/PhysRevC.98.025204
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2017CA06      Prog.Part.Nucl.Phys. 94, 68 (2017)

J.Carlson, M.P.Carpenter, R.Casten, C.Elster, P.Fallon, A.Gade, C.Gross, G.Hagen, A.C.Hayes, D.W.Higinbotham, C.R.Howell, C.J.Horowitz, K.L.Jones, F.G.Kondev, S.Lapi, A.Macchiavelli, E.A.McCutchan, J.Natowitz, W.Nazarewicz, T.Papenbrock, S.Reddy, M.J.Savage, G.Savard, B.M.Sherrill, L.G.Sobotka, M.A.Stoyer, M.B.Tsang, K.Vetter, I.Wiedenhoever, A.H.Wuosmaa, S.Yennello

White paper on nuclear astrophysics and low-energy nuclear physics, Part 2: Low-energy nuclear physics

doi: 10.1016/j.ppnp.2016.11.002
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2017PU05      Phys.Rev. C 96, 055203 (2017); Erratum Phys.Rev. C 98, 019907 (2018)

A.J.R.Puckett, E.J.Brash, M.K.Jones, W.Luo, M.Meziane, L.Pentchev, C.F.Perdrisat, V.Punjabi, F.R.Wesselmann, A.Afanasev, A.Ahmidouch, I.Albayrak, K.A.Aniol, J.Arrington, A.Asaturyan, H.Baghdasaryan, F.Benmokhtar, W.Bertozzi, L.Bimbot, P.Bosted, W.Boeglin, C.Butuceanu, P.Carter, S.Chernenko, M.E.Christy, M.Commisso, J.C.Cornejo, S.Covrig, S.Danagoulian, A.Daniel, A.Davidenko, D.Day, S.Dhamija, D.Dutta, R.Ent, S.Frullani, H.Fenker, E.Frlez, F.Garibaldi, D.Gaskell, S.Gilad, R.Gilman, Y.Goncharenko, K.Hafidi, D.Hamilton, D.W.Higinbotham, W.Hinton, T.Horn, B.Hu, J.Huang, G.M.Huber, E.Jensen, C.Keppel, M.Khandaker, P.King, D.Kirillov, M.Kohl, V.Kravtsov, G.Kumbartzki, Y.Li, V.Mamyan, D.J.Margaziotis, A.Marsh, Y.Matulenko, J.Maxwell, G.Mbianda, D.Meekins, Y.Melnik, J.Miller, A.Mkrtchyan, H.Mkrtchyan, B.Moffit, O.Moreno, J.Mulholland, A.Narayan, S.Nedev, Nuruzzaman, E.Piasetzky, W.Pierce, N.M.Piskunov, Y.Prok, R.D.Ransome, D.S.Razin, P.Reimer, J.Reinhold, O.Rondon, M.Shabestari, A.Shahinyan, K.Shestermanov, S.Sirca, I.Sitnik, L.Smykov, G.Smith, L.Solovyev, P.Solvignon, R.Subedi, E.Tomasi-Gustafsson, A.Vasiliev, M.Veilleux, B.B.Wojtsekhowski, S.Wood, Z.Ye, Y.Zanevsky, X.Zhang, Y.Zhang, X.Zheng, L.Zhu

Polarization transfer observables in elastic electron-proton scattering at Q2 = 2.5, 5.2, 6.8, and 8.5 GeV2

NUCLEAR REACTIONS 1H(polarized e, e)p, E<5.717 GeV; measured elastically scattered electrons by a large-solid-angle electromagnetic calorimeter (BigCal) in coincidence with the scattered protons, polarization of recoiling protons by focal plane polarimeter (FPP), proton angular distributions and azimuthal asymmetries, focal-plane helicity difference/sum ratio asymmetry, analyzing powers at JLab's Continuous Electron Beam Accelerator Facility (CEBAF); deduced ratio of the proton's electric and magnetic form factors μpGpE/GpM. Comparison with other experimental data, and with theoretical predictions.

doi: 10.1103/PhysRevC.96.055203
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2016HI04      Phys.Rev. C 93, 055207 (2016)

D.W.Higinbotham, A.A.Kabir, V.Lin, D.Meekins, B.Norum, B.Sawatzky

Proton radius from electron scattering data

NUCLEAR REACTIONS 1H(e, e), E=150-321 MeV; 1H(e, p), E=55-130 MeV; analyzed high-quality electron scattering data (e, e) from Mainz (1980Si01) and (e, p) from Saskatoon (1974Mu05); deduced proton charge form factor and proton radius using stepwise linear regression.

doi: 10.1103/PhysRevC.93.055207
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2014KA30      Phys.Rev.Lett. 113, 022502 (2014)

J.Katich, X.Qian, Y.X.Zhao, K.Allada, K.Aniol, J.R.M.Annand, T.Averett, F.Benmokhtar, W.Bertozzi, P.C.Bradshaw, P.Bosted, A.Camsonne, M.Canan, G.D.Cates, C.Chen, J.-P.Chen, W.Chen, K.Chirapatpimol, E.Chudakov, E.Cisbani, J.C.Cornejo, F.Cusanno, M.M.Dalton, W.Deconinck, C.W.de Jager, R.De Leo, X.Deng, A.Deur, H.Ding, P.A.M.Dolph, C.Dutta, D.Dutta, L.El Fassi, S.Frullani, H.Gao, F.Garibaldi, D.Gaskell, S.Gilad, R.Gilman, O.Glamazdin, S.Golge, L.Guo, D.Hamilton, O.Hansen, D.W.Higinbotham, T.Holmstrom, J.Huang, M.Huang, H.F.Ibrahim, M.Iodice, X.Jiang, G.Jin, M.K.Jones, A.Kelleher, W.Kim, A.Kolarkar, W.Korsch, J.J.LeRose, X.Li, Y.Li, R.Lindgren, N.Liyanage, E.Long, H.-J.Lu, D.J.Margaziotis, P.Markowitz, S.Marrone, D.McNulty, Z.-E.Meziani, R.Michaels, B.Moffit, C.Munoz Camacho, S.Nanda, A.Narayan, V.Nelyubin, B.Norum, Y.Oh, M.Osipenko, D.Parno, J.C.Peng, S.K.Phillips, M.Posik, A.J.R.Puckett, Y.Qiang, A.Rakhman, R.D.Ransome, S.Riordan, A.Saha, B.Sawatzky, E.Schulte, A.Shahinyan, M.H.Shabestari, S.Sirca, S.Stepanyan, R.Subedi, V.Sulkosky, L.-G.Tang, A.Tobias, G.M.Urciuoli, I.Vilardi, K.Wang, Y.Wang, B.Wojtsekhowski, X.Yan, H.Yao, Y.Ye, Z.Ye, L.Yuan, X.Zhan, Y.Zhang, Y.-W.Zhang, B.Zhao, X.Zheng, L.Zhu, X.Zhu, X.Zong

Measurement of the Target-Normal Single-Spin Asymmetry in Deep-Inelastic Scattering from the Reaction 3He ↑ (e, e')X

doi: 10.1103/PhysRevLett.113.022502
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2014MO25      J.Phys.(London) G41, 105109 (2014)

P.Monaghan, R.Shneor, R.Subedi, B.D.Anderson, K.Aniol, J.Annand, J.Arrington, H.B.Benaoum, F.Benmokhtar, P.Bertin, W.Bertozzi, W.Boeglin, J.P.Chen, S.Choi, E.Chudakov, C.Ciofi degli Atti, E.Cisbani, W.Cosyn, B.Craver, C.W.de Jager, R.J.Feuerbach, E.Folts, S.Frullani, F.Garibaldi, O.Gayou, S.Gilad, R.Gilman, O.Glamazdin, J.Gomez, O.Hansen, D.W.Higinbotham, T.Holmstrom, H.Ibrahim, R.Igarashi, E.Jans, X.Jiang, L.Kaufman, A.Kelleher, A.Kolarkar, E.Kuchina, G.Kumbartzki, J.J.LeRose, R.Lindgren, N.Liyanage, D.J.Margaziotis, P.Markowitz, S.Marrone, M.Mazouz, D.Meekins, R.Michaels, B.Moffit, H.Morita, S.Nanda, C.F.Perdrisat, E.Piasetzky, M.Potokar, V.Punjabi, Y.Qiang, J.Reinhold, B.Reitz, G.Ron, G.Rosner, J.Ryckebusch, A.Saha, B.Sawatzky, J.Segal, A.Shahinyan, S.Sirca, K.Slifer, P.Solvignon, V.Sulkosky, N.Thompson, P.E.Ulmer, G.M.Urciuoli, E.Voutier, K.Wang, J.W.Watson, L.B.Weinstein, B.Wojtsekhowski, S.Wood, H.Yao, X.Zheng, L.Zhu

Measurement of the 12C(e, e'p)11B two-body breakup reaction at high missing momentum

NUCLEAR REACTIONS 12C(E, E'P), E200-400 MeV; measured reaction products, Ep, Ip; deduced σ(θ, E). Comparison with WS+Glauber calculations.

doi: 10.1088/0954-3899/41/10/105109
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2013HE18      Int.J.Mod.Phys. E22, 1330017 (2013)

O.Hen, D.W.Higinbotham, G.A.Miller, E.Piasetzky, L.B.Weinstein

The EMC effect and high momentum nucleons in nuclei

doi: 10.1142/S0218301313300178
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2011PI06      Nucl.Phys. A855, 245c (2011)

E.Piasetzky, L.B.Weinstein, D.W.Higinbotham, J.Gomez, O.Hen, R.Shneor

Short range correlations and the EMC effect

doi: 10.1016/j.nuclphysa.2011.02.050
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2011WE01      Phys.Rev.Lett. 106, 052301 (2011)

L.B.Weinstein, E.Piasetzky, D.W.Higinbotham, J.Gomez, O.Hen, R.Shneor

Short Range Correlations and the EMC Effect

doi: 10.1103/PhysRevLett.106.052301
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2010CU02      Nucl.Phys. A835, 129c (2010)

F.Cusanno, A.Acha, P.Bydzovsky, C.C.Chang, E.Cisbani, C.W.De Jager, R.De Leo, S.Frullani, F.Garibaldi, D.W.Higinbotham, M.Iodice, J.J.LeRose, P.Markowitz, S.Marrone, M.Sotona, G.M.Urciuoli, and the JLab Hall A Collaboration

Update of High Resolution (e, e'K+) Hypernuclear Spectroscopy at Jefferson Lab's Hall A

NUCLEAR REACTIONS 9Be, 12C, 16O(e, eK+), E not given; calculated hypernuclei σ(θ, E) using DWIA with Saclay-Lyon interaction. Comparison with data.

doi: 10.1016/j.nuclphysa.2010.01.185
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2010GA29      Int.J.Mod.Phys. E19, 2487 (2010)

F.Garibaldi, E.Cisbani, F.Cusanno, S.Frullani, M.Iodice, G.M.Urciuoli, R.De Leo, L.Lagamba, S.Marrone, J.J.LeRose, C.W.de Jager, R.J.Feuerbach, D.W.Higinbotham, B.Reitz, A.Acha, P.Markowitz, P.Bydzovsky, M.Sotona, C.C.Chang, J.Millener

High-resolution hypernuclear spectroscopy electron scattering at JLab, HALL A

NUCLEAR REACTIONS 9B, 12C, 16O(E, EK+)9Li/12B/16N, E=4 GeV; measured reaction products; deduced σ(θ, E), hypernuclear levels and relative strengths. Comparison with theoretical calculations.

doi: 10.1142/S0218301310016995
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2010PU02      Phys.Rev.Lett. 104, 242301 (2010)

A.J.R.Puckett, E.J.Brash, M.K.Jones, W.Luo, M.Meziane, L.Pentchev, C.F.Perdrisat, V.Punjabi, F.R.Wesselmann, A.Ahmidouch, I.Albayrak, K.A.Aniol, J.Arrington, A.Asaturyan, H.Baghdasaryan, F.Benmokhtar, W.Bertozzi, L.Bimbot, P.Bosted, W.Boeglin, C.Butuceanu, P.Carter, S.Chernenko, E.Christy, M.Commisso, J.C.Cornejo, S.Covrig, S.Danagoulian, A.Daniel, A.Davidenko, D.Day, S.Dhamija, D.Dutta, R.Ent, S.Frullani, H.Fenker, E.Frlez, F.Garibaldi, D.Gaskell, S.Gilad, R.Gilman, Y.Goncharenko, K.Hafidi, D.Hamilton, D.W.Higinbotham, W.Hinton, T.Horn, B.Hu, J.Huang, G.M.Huber, E.Jensen, C.Keppel, M.Khandaker, P.King, D.Kirillov, M.Kohl, V.Kravtsov, G.Kumbartzki, Y.Li, V.Mamyan, D.J.Margaziotis, A.Marsh, Y.Matulenko, J.Maxwell, G.Mbianda, D.Meekins, Y.Melnik, J.Miller, A.Mkrtchyan, H.Mkrtchyan, B.Moffit, O.Moreno, J.Mulholland, A.Narayan, S.Nedev, Nuruzzaman, E.Piasetzky, W.Pierce, N.M.Piskunov, Y.Prok, R.D.Ransome, D.S.Razin, P.Reimer, J.Reinhold, O.Rondon, M.Shabestari, A.Shahinyan, K.Shestermanov, S.Sirca, I.Sitnik, L.Smykov, G.Smith, L.Solovyev, P.Solvignon, R.Subedi, E.Tomasi-Gustafsson, M.Veilleux, B.B.Wojtsekhowski, S.Wood, Z.Ye, Y.Zanevsky, X.Zhang, Y.Zhang, X.Zheng, L.Zhu

Recoil Polarization Measurements of the Proton Electromagnetic Form Factor Ratio to Q2=8.5 GeV2

doi: 10.1103/PhysRevLett.104.242301
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2008LE08      Nucl.Phys. A804, 116 (2008)

J.J.LeRose, C.W.de Jager, R.J.Feuerbach, D.W.Higinbotham, B.Reitz, A.Acha, P.Markowitz, P.Bydzovsky, M.Sotona, C.C.Chang, E.Cisbani, F.Cusanno, S.Frullani, F.Garibaldi, R.De Leo, L.Lagamba, S.Marrone, M.Iodice, G.M.Urciuoli, for the Hall A Collaboration

Hypernuclear spectroscopy via (e, e' K+) in JLab's Hall A

NUCLEAR REACTIONS 9Be, 12C, 16O(e, e'K+), E=3.66 GeV; measured hypernuclei production excitation spectra, σ(E), missing mass spectra. 12B, 16N deduced hypernuclei levels, J, π.

doi: 10.1016/j.nuclphysa.2008.01.011
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Data from this article have been entered in the XUNDL database. For more information, click here.


2005KR14      Phys.Rev.Lett. 95, 142002 (2005)

K.Kramer, D.S.Armstrong, T.D.Averett, W.Bertozzi, S.Binet, C.Butuceanu, A.Camsonne, G.D.Cates, J.-P.Chen, S.Choi, E.Chudakov, F.Cusanno, A.Deur, P.Djawotho, D.Dutta, J.M.Finn, H.Gao, F.Garibaldi, O.Gayou, R.Gilman, A.Glamazdin, V.Gorbenko, K.A.Griffioen, J.-O.Hansen, D.W.Higinbotham, W.Hinton, T.Horn, C.W.de Jager, X.Jiang, W.Korsch, J.LeRose, D.Lhuillier, N.Liyanage, D.J.Margaziotis, K.McCormick, Z.-E.Meziani, R.Michaels, B.Milbrath, B.Moffit, S.Nanda, C.F.Perdrisat, R.Pomatsalyuk, V.Punjabi, B.Reitz, J.Roche, R.Roche, M.Roedelbronn, N.Savvinov, J.Secrest, J.Singh, S.Sirca, K.Slifer, P.Solvignon, D.J.Steiner, R.Suleiman, V.Sulkosky, A.Tobias, A.Vacheret, Y.Xiao, X.Zheng, J.Zhou, L.Zhu, X.Zhu, P.A.Zolnierczuk

Q2 Dependence of the Neutron Spin Structure Function gn2 at Low Q2

NUCLEAR REACTIONS 3He(polarized e, e'), E=3.465-5.727 GeV; measured parallel and perpendicular cross section differences. 1n, 3He deduced momentum transfer dependence of spin structure function.

doi: 10.1103/PhysRevLett.95.142002
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2005QA01      Phys.Rev.Lett. 94, 142301 (2005)

I.A.Qattan, J.Arrington, R.E.Segel, X.Zheng, K.Aniol, O.K.Baker, R.Beams, E.J.Brash, J.Calarco, A.Camsonne, J.-P.Chen, M.E.Christy, D.Dutta, R.Ent, S.Frullani, D.Gaskell, O.Gayou, R.Gilman, C.Glashausser, K.Hafidi, J.-O.Hansen, D.W.Higinbotham, W.Hinton, R.J.Holt, G.M.Huber, H.Ibrahim, L.Jisonna, M.K.Jones, C.E.Keppel, E.Kinney, G.J.Kumbartzki, A.Lung, D.J.Margaziotis, K.McCormick, D.Meekins, R.Michaels, P.Monaghan, P.Moussiegt, L.Pentchev, C.Perdrisat, V.Punjabi, R.Ransome, J.Reinhold, B.Reitz, A.Saha, A.Sarty, E.C.Schulte, K.Slifer, P.Solvignon, V.Sulkosky, K.Wijesooriya, B.Zeidman

Precision Rosenbluth Measurement of the Proton Elastic Form Factors

NUCLEAR REACTIONS 1H(e, e), E=1.9-4.7 GeV; measured recoil proton spectra, σ(θ), σ. 1H deduced electromagnetic form factors.

doi: 10.1103/PhysRevLett.94.142301
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2005ST30      Phys.Rev.Lett. 95, 172501 (2005)

M.F.M.Steenbakkers, M.F.van Batenburg, Th.S.Bauer, H.P.Blok, T.Botto, G.E.Dodge, D.L.Groep, P.Heimberg, W.H.A.Hesselink, D.W.Higinbotham, E.Jans, Y.Jun, T.J.Ketel, L.Lapikas, D.J.J.de Lange, B.E.Norum, I.Passchier, R.Starink, L.Todor, H.de Vries

Quasifree π0 and π- Electroproduction on 4He in the Δ-Resonance Region

NUCLEAR REACTIONS 4He(e, e'pπ-), (e, e'pπ0), E=672 MeV; measured Ep, recoil spectra, σ(θ). Comparison with model predictions.

doi: 10.1103/PhysRevLett.95.172501
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2004HI03      Eur.Phys.J. A 19, Supplement 1, 171 (2004)

D.W.Higinbotham, for the Jefferson Lab Hall A Collaboration

3He(e, e'p)d and 3He(e, e'p)pn at high momentum transfer Results from the Jefferson Lab E89-044 experiment

NUCLEAR REACTIONS 3He(e, e'p), 3He(e, e'np), E=high; measured σ(E, θ). Comparison with model predictions.

doi: 10.1140/epjad/s2004-03-028-6
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2003JI01      Phys.Rev. C 67, 028201 (2003)

X.Jiang, R.Gilman, R.Ransome, P.Markowitz, T.-H.Chang, C.-C.Chang, G.A.Peterson, D.W.Higinbotham, M.K.Jones, N.Liyanage, J.Mitchell

Search for neutral baryon resonances below pion threshold

NUCLEAR REACTIONS 1H(e, e'π+X), E=1.722 GeV; measured missing mass spectra, neutral baryon resonance yield ratio.

doi: 10.1103/PhysRevC.67.028201
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2003SA06      J.Phys.(London) G29, R1 (2003)

M.M.Sargsian, J.Arrington, W.Bertozzi, W.Boeglin, C.E.Carlson, D.B.Day, L.L.Frankfurt, K.Egiyan, R.Ent, S.Gilad, K.Griffioen, D.W.Higinbotham, S.Kuhn, W.Melnitchouk, G.A.Miller, E.Piasetzky, S.Stepanyan, M.I.Strikman, L.B.Weinstein

Hadrons in the nuclear medium

doi: 10.1088/0954-3899/29/3/201
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2003ST13      Phys.Rev.Lett. 91, 052301 (2003)

S.Strauch, S.Dieterich, K.A.Aniol, J.R.M.Annand, O.K.Baker, W.Bertozzi, M.Boswell, E.J.Brash, Z.Chai, J.-P.Chen, M.E.Christy, E.Chudakov, A.Cochran, R.De Leo, R.Ent, M.B.Epstein, J.M.Finn, K.G.Fissum, T.A.Forest, S.Frullani, F.Garibaldi, A.Gasparian, O.Gayou, S.Gilad, R.Gilman, C.Glashausser, J.Gomez, V.Gorbenko, P.L.J.Gueye, J.O.Hansen, D.W.Higinbotham, B.Hu, C.E.Hyde-Wright, D.G.Ireland, C.Jackson, C.W.de Jager, X.Jiang, C.Jones, M.K.Jones, J.D.Kellie, J.J.Kelly, C.E.Keppel, G.Kumbartzki, M.Kuss, J.J.LeRose, K.Livingston, N.Liyanage, S.Malov, D.J.Margaziotis, D.Meekins, R.Michaels, J.H.Mitchell, S.K.Nanda, J.Nappa, C.F.Perdrisat, V.A.Punjabi, R.D.Ransome, R.Roche, G.Rosner, M.Rvachev, F.Sabatie, A.Saha, A.Sarty, J.M.Udias, P.E.Ulmer, G.M.Urciuoli, J.F.J.van den Brand, J.R.Vignote, D.P.Watts, L.B.Weinstein, K.Wijesooriya, B.Wojtsekhowski

Polarization Transfer in the 4He(e(pol), e'p(pol))3H Reaction up to Q2=2.6 (GeV/c)2

NUCLEAR REACTIONS 4He(polarized e, e'p), E=3400, 4237, 4239 MeV; measured polarization transfer; deduced medium modification effects. Comparison with model predictions.

doi: 10.1103/PhysRevLett.91.052301
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2003XU02      Phys.Rev. C 67, 012201 (2003)

W.Xu, B.Anderson, L.Auberbach, T.Averett, W.Bertozzi, T.Black, J.Calarco, L.Cardman, G.D.Cates, Z.W.Chai, J.P.Chen, S.Choi, E.Chudakov, S.Churchwell, G.S.Corrado, C.Crawford, D.Dale, A.Deur, P.Djawotho, T.W.Donnelly, D.Dutta, J.M.Finn, H.Gao, R.Gilman, A.V.Glamazdin, C.Glashausser, W.Glockle, J.Golak, J.Gomez, V.G.Gorbenko, J.-O.Hansen, F.W.Hersman, D.W.Higinbotham, R.Holmes, C.R.Howell, E.Hughes, B.Humensky, S.Incerti, C.W.de Jager, J.S.Jensen, X.Jiang, C.E.Jones, M.Jones, R.Kahl, H.Kamada, A.Kievsky, I.Kominis, W.Korsch, K.Kramer, G.Kumbartzki, M.Kuss, E.Lakuriqi, M.Liang, N.Liyanage, J.LeRose, S.Malov, D.J.Margaziotis, J.W.Martin, K.McCormick, R.D.McKeown, K.McIlhany, Z.-E.Meziani, R.Michaels, G.W.Miller, J.Mitchell, S.Nanda, E.Pace, T.Pavlin, G.G.Petratos, R.I.Pomatsalyuk, D.Pripstein, D.Prout, R.D.Ransome, Y.Roblin, M.Rvachev, A.Saha, G.Salme, M.Schnee, T.Shin, K.Slifer, P.A.Souder, S.Strauch, R.Suleiman, M.Sutter, B.Tipton, L.Todor, M.Viviani, B.Vlahovic, J.Watson, C.F.Williamson, H.Witala, B.Wojtsekhowski, F.Xiong, J.Yeh, P.Zolnierczuk

Plane-wave impulse approximation extraction of the neutron magnetic form factor from quasielastic 3He(pol)(e(pol), e') at Q2 = 0.3 to 0.6 (GeV/c)2

NUCLEAR REACTIONS 3He(polarized e, e'), E=0.778, 1.727 GeV; measured transverse spin-dependent asymmetry. 1n deduced magnetic form factor. Polarized target.

doi: 10.1103/PhysRevC.67.012201
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2002PA13      Phys.Rev.Lett. 88, 102302 (2002)

I.Passchier, L.D.van Buuren, D.Szczerba, R.Alarcon, Th.S.Bauer, D.J.Boersma, J.F.J.van den Brand, H.J.Bulten, R.Ent, M.Ferro-Luzzi, M.Harvey, P.Heimberg, D.W.Higinbotham, S.Klous, H.Kolster, J.Lang, B.L.Militsyn, D.Nikolenko, G.J.L.Nooren, B.E.Norum, H.R.Poolman, I.Rachek, M.C.Simani, E.Six, H.de Vries, K.Wang, Z.-L.Zhou

Spin-Momentum Correlations in Quasielastic Electron Scattering from Deuterium

NUCLEAR REACTIONS 2H(polarized e, e'p), E=720 MeV; measured proton, electron energy spectrum, (proton)(electron)-coin, spin correlation parameter vs missing momentum. Polarized target, comparison with theoretical results including different nucleon-nucleon potentials and S, D states.

doi: 10.1103/PhysRevLett.88.102302
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2002VA11      Phys.Rev.Lett. 89, 012001 (2002)

L.D.Van Buuren, D.Szczerba, R.Alarcon, D.J.Boersma, J.F.J.van den Brand, H.J.Bulten, R.Ent, M.Ferro-Luzzi, M.Harvey, P.Heimberg, D.W.Higinbotham, S.Klous, H.Kolster, J.Lang, B.L.Militsyn, D.Nikolenko, B.E.Norum, I.Passchier, H.R.Poolman, I.Rachek, M.C.Simani, E.Six, H.de Vries, Z.-L.Zhou

Spin-Dependent Electron-Proton Scattering in the Δ-Excitation Region

NUCLEAR REACTIONS 1H(polarized e, e'), E=720 MeV; measured σ(E, θ), spin correlation parameters. Polarized target, comparison with model predictions.

doi: 10.1103/PhysRevLett.89.012001
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2001XI04      Phys.Rev.Lett. 87, 242501 (2001)

F.Xiong, D.Dutta, W.Xu, B.Anderson, L.Auberbach, T.Averett, W.Bertozzi, T.Black, J.Calarco, L.Cardman, G.D.Cates, Z.W.Chai, J.P.Chen, S.Choi, E.Chudakov, S.Churchwell, G.S.Corrado, C.Crawford, D.Dale, A.Deur, P.Djawotho, B.W.Filippone, J.M.Finn, H.Gao, R.Gilman, A.V.Glamazdin, C.Glashausser, W.Glockle, J.Golak, J.Gomez, V.G.Gorbenko, J.-O.Hansen, F.W.Hersman, D.W.Higinbotham, R.Holmes, C.R.Howell, E.Hughes, B.Humensky, S.Incerti, C.W.de Jager, J.S.Jensen, X.Jiang, C.E.Jones, M.Jones, R.Kahl, H.Kamada, A.Kievsky, I.Kominis, W.Korsch, K.Kramer, G.Kumbartzki, M.Kuss, E.Lakuriqi, M.Liang, N.Liyanage, J.LeRose, S.Malov, D.J.Margaziotis, J.W.Martin, K.McCormick, R.D.McKeown, K.McIlhany, Z.-E.Meziani, R.Michaels, G.W.Miller, E.Pace, T.Pavlin, G.G.Petratos, R.I.Pomatsalyuk, D.Pripstein, D.Prout, R.D.Ransome, Y.Roblin, M.Rvachev, A.Saha, G.Salme, M.Schnee, T.Shin, K.Slifer, P.A.Souder, S.Strauch, R.Suleiman, M.Sutter, B.Tipton, L.Todor, M.Viviani, B.Vlahovic, J.Watson, C.F.Williamson, H.Witala, B.Wojtsekhowski, J.Yeh, P.Zolnierczuk

Precision Measurement of the Spin-Dependent Asymmetry in the Threshold Region of 3He(pol)(e(pol), e')

NUCLEAR REACTIONS 3He(polarized e, e'), E=0.778, 1.727 GeV; measured spin-dependent asymmetry. Polarized target, comparison with model predictions.

doi: 10.1103/PhysRevLett.87.242501
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2000HI09      Nucl.Instrum.Methods Phys.Res. A444, 557 (2000)

D.W.Higinbotham, R.Alarcon, Th.Bauer, D.J.Boersma, J.F.J.van den Brand, H.J.Bulten, L.D.van Buuren, R.Ent, M.Ferro-Luzzi, D.Geurts, M.Harvey, P.Heimberg, B.E.Norum, I.Passchier, H.R.Poolman, E.Six, M.F.M.Steenbakkers, D.Szczerba, H.de Vries

Recoil Detection with a Polarized 3He Target

NUCLEAR REACTIONS 3He(polarized e, e'), E=720 MeV; measured electron spectra, σ(Q2), asymmetry. 3He(polarized e, e'π0), (polarized e, e'π+)E=720 MeV; measured missing mass spectrum. 3He(e, e'd), (e, e'pd), (e, e'p), (e, e'2p), E=720 MeV; measured coincident scattered electron spectra. Polarized target.

doi: 10.1016/S0168-9002(99)01176-6
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2000PA22      Nucl.Phys. A663-664, 421c (2000)

I.Passchier, L.D.van Buuren, D.Szczerba, R.Alarcon, Th.S.Bauer, D.Boersma, J.F.J.van den Brand, H.J.Bulten, M.Ferro-Luzzi, D.W.Higinbotham, C.W.de Jager, S.Klous, H.Kolster, J.Lang, D.Nikolenko, G.J.Nooren, B.E.Norum, H.R.Poolman, I.Rachek, M.C.Simani, E.Six, H.de Vries, K.Wang, Z.-L.Zhou

The Charge Form Factor of the Neutron from 2H(pol)(e(pol), e'n)p

NUCLEAR REACTIONS 2H(polarized e, e'n), (polarized e, e'p), E=720 MeV; measured (particle)(electron)-coin, sideways spin-correlation parameter. 1n deduced charge form factor. Polarized target.

doi: 10.1016/S0375-9474(99)00673-9
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2000XU07      Phys.Rev.Lett. 85, 2900 (2000)

W.Xu, D.Dutta, F.Xiong, B.Anderson, L.Auberbach, T.Averett, W.Bertozzi, T.Black, J.Calarco, L.Cardman, G.D.Cates, Z.W.Chai, J.P.Chen, S.Choi, E.Chudakov, S.Churchwell, G.S.Corrado, C.Crawford, D.Dale, A.Deur, P.Djawotho, B.W.Filippone, J.M.Finn, H.Gao, R.Gilman, A.V.Glamazdin, C.Glashausser, W.Glockle, J.Golak, J.Gomez, V.G.Gorbenko, J.-O.Hansen, F.W.Hersman, D.W.Higinbotham, R.Holmes, C.R.Howell, E.Hughes, B.Humensky, S.Incerti, C.W.de Jager, J.S.Jensen, X.Jiang, C.E.Jones, M.Jones, R.Kahl, H.Kamada, A.Kievsky, I.Kominis, W.Korsch, K.Kramer, G.Kumbartzki, M.Kuss, E.Lakuriqi, M.Liang, N.Liyanage, J.LeRose, S.Malov, D.J.Margaziotis, J.W.Martin, K.McCormick, R.D.McKeown, K.McIlhany, Z.-E.Meziani, R.Michaels, G.W.Miller, E.Pace, T.Pavlin, G.G.Petratos, R.I.Pomatsalyuk, D.Pripstein, D.Prout, R.D.Ransome, Y.Roblin, M.Rvachev, A.Saha, G.Salme, M.Schnee, T.Shin, K.Slifer, P.A.Souder, S.Strauch, R.Suleiman, M.Sutter, B.Tipton, L.Todor, M.Viviani, B.Vlahovic, J.Watson, C.F.Williamson, H.Witala, B.Wojtsekhowski, J.Yeh, P.Zolnierczuk

Transverse Asymmetry AT' from the Quasielastic 3He(pol)(e(pol), e') Process and the Neutron Magnetic Form Factor

NUCLEAR REACTIONS 3He(polarized e, e'), E=0.778, 1.727 GeV; measured transverse asymmetry. 1n deduced magnetic form factor. Polarized target.

doi: 10.1103/PhysRevLett.85.2900
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1999BO12      Phys.Rev.Lett. 82, 3755 (1999)

M.Bouwhuis, R.Alarcon, T.Botto, J.F.J.van den Brand, H.J.Bulten, S.Dolfini, R.Ent, M.Ferro-Luzzi, D.W.Higinbotham, C.W.de Jager, J.Lang, D.J.J.de Lange, N.Papadakis, I.Passchier, H.R.Poolman, E.Six, J.J.M.Steijger, N.Vodinas, H.de Vries, Z.-L.Zhou

Measurement of T20 in Elastic Electron-Deuteron Scattering

NUCLEAR REACTIONS 2H(e, e), E=704 MeV; measured T20 vs momentum transfer. Polarized target. Comparison with nonrelativistic calculation.

doi: 10.1103/PhysRevLett.82.3755
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1999FE14      Nucl.Phys. (Supplement) A654, 1009c (1999)

M.Ferro-Luzzi, R.Alarcon, N.van Bakel, T.Bauer, D.Boersma, T.Botto, M.Bouwhuis, J.F.J.van den Brand, L.van Buuren, H.-J.Bulten, R.Ent, D.Geurts, M.Harvey, P.Heimberg, D.W.Higinbotham, C.W.de Jager, S.Klous, H.Kolster, J.Lang, B.Militsyn, B.E.Norum, I.Passchier, H.R.Poolman, M.C.Simani, E.Six, J.J.M.Steijger, D.Szczerba, H.de Vries, Z.L.Zhou

Electron Scattering at NIKHEF with Polarized Beam and Targets

NUCLEAR REACTIONS 2H(e, e'), E=900 MeV; measured tensor analyzing powers. 3He(polarized e, e'n), (polarized e, e'p), E=900 MeV; measured spin correlation parameters. Polarized targets, comparisons with model predictions.

doi: 10.1016/S0375-9474(00)88589-9
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1999PA23      Phys.Rev.Lett. 82, 4988 (1999)

I.Passchier, R.Alarcon, Th.S.Bauer, D.Boersma, J.F.J.van den Brand, L.D.van Buuren, H.J.Bulten, M.Ferro-Luzzi, P.Heimberg, D.W.Higinbotham, C.W.de Jager, S.Klous, H.Kolster, J.Lang, B.L.Militsyn, D.Nikolenko, G.J.L.Nooren, B.E.Norum, H.R.Poolman, I.Rachek, M.C.Simani, E.Six, D.Szczerba, H.de Vries, K.Wang, Z.-L.Zhou

Charge Form Factor of the Neutron from the Reaction 2H(pol)(e(pol), e'n)p

NUCLEAR REACTIONS 2H(polarized e, e'n), E=720 MeV; measured asymmetry, spin correlation parameter. 1n deduced charge form factor. Polarized gas target.

doi: 10.1103/PhysRevLett.82.4988
Citations: PlumX Metrics


1999ZH03      Phys.Rev.Lett. 82, 687 (1999)

Z.-L.Zhou, M.Bouwhuis, M.Ferro-Luzzi, E.Passchier, R.Alarcon, M.Anghinolfi, H.Arenhovel, R.van Bommel, T.Botto, J.F.J.van den Brand, H.J.Bulten, S.Choi, J.Comfort, S.M.Dolfini, R.Ent, C.Gaulard, D.W.Higinbotham, C.W.de Jager, E.Konstantinov, J.Lang, W.Leidemann, D.J.de Lange, M.A.Miller, D.Nikolenko, N.Papadakis, I.Passchier, H.R.Poolman, S.G.Popov, I.Rachek, M.Ripani, E.Six, J.J.M.Steijger, M.Taiuti, O.Unal, N.Vodinas, H.de Vries

Tensor Analyzing Powers for Quasielastic Electron Scattering from Deuterium

NUCLEAR REACTIONS 2H(e, e'p), E=565 MeV; measured missing momentum spectrum, tensor analyzing power vs θ. Comparison with model. Polarized target.

doi: 10.1103/PhysRevLett.82.687
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1998VA05      Nucl.Phys. A631, 545c (1998)

M.J.M.van Sambeek, T.Botto, T.Bauer, H.P.Blok, D.Boersma, G.E.Dodge, D.Groep, P.Heimberg, W.H.A.Hesselink, D.W.Higinbotham, C.W.de Jager, E.Jans, T.J.Ketel, D.J.J.de Lange, L.Lapikas, B.E.Norum, I.Passchier, V.M.Pugatch, M.F.M.Steenbakkers, J.J.M.Steijger, L.Todor, P.Ulmer, H.de Vries, K.Wang

Coherent π0 Electroproduction on 4He in the Δ Region

NUCLEAR REACTIONS 4He(e, e'π0), E=676 MeV; measured missing energy distribution, σ(θ(pion)).

doi: 10.1016/S0375-9474(98)00065-7
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