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ECCE Sensitivity Studies for Single Hadron Transverse Single Spin Asymmetry Measurements

We performed feasibility studies for various single transverse spin measurements that are related to the Sivers effect, transversity and the tensor charge, and the Collins fragmentation function. The processes studied include semi-inclusive deep inelastic scattering (SIDIS) where single hadrons (pio...

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Published in:arXiv.org 2022-07
Main Authors: Prokudin, A, Akiba, Y, Amaryan, M, Arsene, I C, Bashkanov, M, Berdnikov, V, Bernauer, J C, Borysova, M, Briscoe, W J, Brooks, M, W -C Chang, K -Y Cheng, Chujo, T, Crafts, J, Crawford, C, Creekmore, S, Cuevas, C, Doshita, N, Dupré, R, Dzhygadlo, R, L El Fassi, Emmert, A, Frantz, J, Friscic, I, Ha, S K, Haggerty, J, Hen, O, Hwang, K Y, Joo, K, Kalantarians, N, Kalicy, G, Kawade, K, Kim, A, Kim, C, Ko, S H, Korover, I, C -M Kuo, Y -J Lee, X Li, Lim, S, C -H Lin, Liyanage, N, Long, E, Z Lu, Markowitz, P, Marukyan, H, Mihovilovic, M, Monaghan, P, Montgomery, R, Morrison, D, Mkrtchyan, H, C Munoz Camacho, Nattrass, C, Nouicer, R, Paganis, S, Papandreou, Z, Paus, C, Phelps, W, Purschke, M L, Putschke, J, Rajput-Ghoshal, R, Raue, B, Read, K, Ron, G, Rosati, M, Ryu, J, Santiesteban, N, Santos, R, Sarsour, M, Schambach, J, Schmidt, A, Schmidt, N, Simmerling, P, Sirca, S, Shi, Z, C -W Shih, Shimizu, S, Shrestha, U, Slifer, K, Soltz, R, Song, J, Sun, P, Sun, X, Suresh, K, W -C Tang, Timmins, A, Trotta, N, Tveter, T S, Usman, A, van Hecke, H W, Wang, Q, Watts, D P, Wickramaarachchi, N, Wood, M H, Xiao, Z, Yang, Y, Zajc, W A, Zhang, J, Zheng, X, Zhuang, P
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creator Prokudin, A
Akiba, Y
Amaryan, M
Arsene, I C
Bashkanov, M
Berdnikov, V
Bernauer, J C
Borysova, M
Briscoe, W J
Brooks, M
W -C Chang
K -Y Cheng
Chujo, T
Crafts, J
Crawford, C
Creekmore, S
Cuevas, C
Doshita, N
Dupré, R
Dzhygadlo, R
L El Fassi
Emmert, A
Frantz, J
Friscic, I
Ha, S K
Haggerty, J
Hen, O
Hwang, K Y
Joo, K
Kalantarians, N
Kalicy, G
Kawade, K
Kim, A
Kim, C
Ko, S H
Korover, I
C -M Kuo
Y -J Lee
X Li
Lim, S
C -H Lin
Liyanage, N
Long, E
Z Lu
Markowitz, P
Marukyan, H
Mihovilovic, M
Monaghan, P
Montgomery, R
Morrison, D
Mkrtchyan, H
C Munoz Camacho
Nattrass, C
Nouicer, R
Paganis, S
Papandreou, Z
Paus, C
Phelps, W
Purschke, M L
Putschke, J
Rajput-Ghoshal, R
Raue, B
Read, K
Ron, G
Rosati, M
Ryu, J
Santiesteban, N
Santos, R
Sarsour, M
Schambach, J
Schmidt, A
Schmidt, N
Simmerling, P
Sirca, S
Shi, Z
C -W Shih
Shimizu, S
Shrestha, U
Slifer, K
Soltz, R
Song, J
Sun, P
Sun, X
Suresh, K
W -C Tang
Timmins, A
Trotta, N
Tveter, T S
Usman, A
van Hecke, H W
Wang, Q
Watts, D P
Wickramaarachchi, N
Wood, M H
Xiao, Z
Yang, Y
Zajc, W A
Zhang, J
Zheng, X
Zhuang, P
description We performed feasibility studies for various single transverse spin measurements that are related to the Sivers effect, transversity and the tensor charge, and the Collins fragmentation function. The processes studied include semi-inclusive deep inelastic scattering (SIDIS) where single hadrons (pions and kaons) were detected in addition to the scattered DIS lepton. The data were obtained in {\sc pythia}6 and {\sc geant}4 simulated e+p collisions at 18 GeV on 275 GeV, 18 on 100, 10 on 100, and 5 on 41 that use the ECCE detector configuration. Typical DIS kinematics were selected, most notably \(Q^2 > 1 \) GeV\(^2\), and cover the \(x\) range from \(10^{-4}\) to \(1\). The single spin asymmetries were extracted as a function of \(x\) and \(Q^2\), as well as the semi-inclusive variables \(z\), and \(P_T\). They are obtained in azimuthal moments in combinations of the azimuthal angles of the hadron transverse momentum and transverse spin of the nucleon relative to the lepton scattering plane. The initially unpolarized MonteCarlo was re-weighted in the true kinematic variables, hadron types and parton flavors based on global fits of fixed target SIDIS experiments and \(e^+e^-\) annihilation data. The expected statistical precision of such measurements is extrapolated to 10 fb\(^{-1}\) and potential systematic uncertainties are approximated given the deviations between true and reconstructed yields. The impact on the knowledge of the Sivers functions, transversity and tensor charges, and the Collins function has then been evaluated in the same phenomenological extractions as in the Yellow Report. The impact is found to be comparable to that obtained with the parameterized Yellow Report detector and shows that the ECCE detector configuration can fulfill the physics goals on these quantities.
doi_str_mv 10.48550/arxiv.2207.10890
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The processes studied include semi-inclusive deep inelastic scattering (SIDIS) where single hadrons (pions and kaons) were detected in addition to the scattered DIS lepton. The data were obtained in {\sc pythia}6 and {\sc geant}4 simulated e+p collisions at 18 GeV on 275 GeV, 18 on 100, 10 on 100, and 5 on 41 that use the ECCE detector configuration. Typical DIS kinematics were selected, most notably \(Q^2 &gt; 1 \) GeV\(^2\), and cover the \(x\) range from \(10^{-4}\) to \(1\). The single spin asymmetries were extracted as a function of \(x\) and \(Q^2\), as well as the semi-inclusive variables \(z\), and \(P_T\). They are obtained in azimuthal moments in combinations of the azimuthal angles of the hadron transverse momentum and transverse spin of the nucleon relative to the lepton scattering plane. 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Z</creatorcontrib><creatorcontrib>Paus, C</creatorcontrib><creatorcontrib>Phelps, W</creatorcontrib><creatorcontrib>Purschke, M L</creatorcontrib><creatorcontrib>Putschke, J</creatorcontrib><creatorcontrib>Rajput-Ghoshal, R</creatorcontrib><creatorcontrib>Raue, B</creatorcontrib><creatorcontrib>Read, K</creatorcontrib><creatorcontrib>Ron, G</creatorcontrib><creatorcontrib>Rosati, M</creatorcontrib><creatorcontrib>Ryu, J</creatorcontrib><creatorcontrib>Santiesteban, N</creatorcontrib><creatorcontrib>Santos, R</creatorcontrib><creatorcontrib>Sarsour, M</creatorcontrib><creatorcontrib>Schambach, J</creatorcontrib><creatorcontrib>Schmidt, A</creatorcontrib><creatorcontrib>Schmidt, N</creatorcontrib><creatorcontrib>Simmerling, P</creatorcontrib><creatorcontrib>Sirca, S</creatorcontrib><creatorcontrib>Shi, Z</creatorcontrib><creatorcontrib>C -W Shih</creatorcontrib><creatorcontrib>Shimizu, S</creatorcontrib><creatorcontrib>Shrestha, U</creatorcontrib><creatorcontrib>Slifer, K</creatorcontrib><creatorcontrib>Soltz, R</creatorcontrib><creatorcontrib>Song, J</creatorcontrib><creatorcontrib>Sun, P</creatorcontrib><creatorcontrib>Sun, X</creatorcontrib><creatorcontrib>Suresh, K</creatorcontrib><creatorcontrib>W -C Tang</creatorcontrib><creatorcontrib>Timmins, A</creatorcontrib><creatorcontrib>Trotta, N</creatorcontrib><creatorcontrib>Tveter, T S</creatorcontrib><creatorcontrib>Usman, A</creatorcontrib><creatorcontrib>van Hecke, H W</creatorcontrib><creatorcontrib>Wang, Q</creatorcontrib><creatorcontrib>Watts, D P</creatorcontrib><creatorcontrib>Wickramaarachchi, N</creatorcontrib><creatorcontrib>Wood, M H</creatorcontrib><creatorcontrib>Xiao, Z</creatorcontrib><creatorcontrib>Yang, Y</creatorcontrib><creatorcontrib>Zajc, W A</creatorcontrib><creatorcontrib>Zhang, J</creatorcontrib><creatorcontrib>Zheng, X</creatorcontrib><creatorcontrib>Zhuang, P</creatorcontrib><title>ECCE Sensitivity Studies for Single Hadron Transverse Single Spin Asymmetry Measurements</title><title>arXiv.org</title><description>We performed feasibility studies for various single transverse spin measurements that are related to the Sivers effect, transversity and the tensor charge, and the Collins fragmentation function. The processes studied include semi-inclusive deep inelastic scattering (SIDIS) where single hadrons (pions and kaons) were detected in addition to the scattered DIS lepton. The data were obtained in {\sc pythia}6 and {\sc geant}4 simulated e+p collisions at 18 GeV on 275 GeV, 18 on 100, 10 on 100, and 5 on 41 that use the ECCE detector configuration. Typical DIS kinematics were selected, most notably \(Q^2 &gt; 1 \) GeV\(^2\), and cover the \(x\) range from \(10^{-4}\) to \(1\). The single spin asymmetries were extracted as a function of \(x\) and \(Q^2\), as well as the semi-inclusive variables \(z\), and \(P_T\). They are obtained in azimuthal moments in combinations of the azimuthal angles of the hadron transverse momentum and transverse spin of the nucleon relative to the lepton scattering plane. The initially unpolarized MonteCarlo was re-weighted in the true kinematic variables, hadron types and parton flavors based on global fits of fixed target SIDIS experiments and \(e^+e^-\) annihilation data. The expected statistical precision of such measurements is extrapolated to 10 fb\(^{-1}\) and potential systematic uncertainties are approximated given the deviations between true and reconstructed yields. The impact on the knowledge of the Sivers functions, transversity and tensor charges, and the Collins function has then been evaluated in the same phenomenological extractions as in the Yellow Report. The impact is found to be comparable to that obtained with the parameterized Yellow Report detector and shows that the ECCE detector configuration can fulfill the physics goals on these quantities.</description><subject>Asymmetry</subject><subject>Configurations</subject><subject>Feasibility studies</subject><subject>Flavor (particle physics)</subject><subject>Hadrons</subject><subject>Inelastic scattering</subject><subject>Kaons</subject><subject>Kinematics</subject><subject>Leptons</subject><subject>Partons</subject><subject>Pions</subject><subject>Sensors</subject><subject>Tensors</subject><subject>Transverse 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Studies for Single Hadron Transverse Single Spin Asymmetry Measurements</title><author>Prokudin, A ; Akiba, Y ; Amaryan, M ; Arsene, I C ; Bashkanov, M ; Berdnikov, V ; Bernauer, J C ; Borysova, M ; Briscoe, W J ; Brooks, M ; W -C Chang ; K -Y Cheng ; Chujo, T ; Crafts, J ; Crawford, C ; Creekmore, S ; Cuevas, C ; Doshita, N ; Dupré, R ; Dzhygadlo, R ; L El Fassi ; Emmert, A ; Frantz, J ; Friscic, I ; Ha, S K ; Haggerty, J ; Hen, O ; Hwang, K Y ; Joo, K ; Kalantarians, N ; Kalicy, G ; Kawade, K ; Kim, A ; Kim, C ; Ko, S H ; Korover, I ; C -M Kuo ; Y -J Lee ; X Li ; Lim, S ; C -H Lin ; Liyanage, N ; Long, E ; Z Lu ; Markowitz, P ; Marukyan, H ; Mihovilovic, M ; Monaghan, P ; Montgomery, R ; Morrison, D ; Mkrtchyan, H ; C Munoz Camacho ; Nattrass, C ; Nouicer, R ; Paganis, S ; Papandreou, Z ; Paus, C ; Phelps, W ; Purschke, M L ; Putschke, J ; Rajput-Ghoshal, R ; Raue, B ; Read, K ; Ron, G ; Rosati, M ; Ryu, J ; Santiesteban, N ; Santos, R ; Sarsour, M ; Schambach, J ; Schmidt, A ; Schmidt, N ; Simmerling, P ; Sirca, S ; Shi, Z ; C -W Shih ; Shimizu, S ; Shrestha, U ; Slifer, K ; Soltz, R ; Song, J ; Sun, P ; Sun, X ; Suresh, K ; W -C Tang ; Timmins, A ; Trotta, N ; Tveter, T S ; Usman, A ; van Hecke, H W ; Wang, Q ; Watts, D P ; Wickramaarachchi, N ; Wood, M H ; Xiao, Z ; Yang, Y ; Zajc, W A ; Zhang, J ; Zheng, X ; Zhuang, P</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-a950-883aba72eb38b1a20abc2d473d35a53fa3c8c8dba6e87f3d80d0639a5fbecd03</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2022</creationdate><topic>Asymmetry</topic><topic>Configurations</topic><topic>Feasibility studies</topic><topic>Flavor (particle physics)</topic><topic>Hadrons</topic><topic>Inelastic scattering</topic><topic>Kaons</topic><topic>Kinematics</topic><topic>Leptons</topic><topic>Partons</topic><topic>Pions</topic><topic>Sensors</topic><topic>Tensors</topic><topic>Transverse 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Fassi</au><au>Emmert, A</au><au>Frantz, J</au><au>Friscic, I</au><au>Ha, S K</au><au>Haggerty, J</au><au>Hen, O</au><au>Hwang, K Y</au><au>Joo, K</au><au>Kalantarians, N</au><au>Kalicy, G</au><au>Kawade, K</au><au>Kim, A</au><au>Kim, C</au><au>Ko, S H</au><au>Korover, I</au><au>C -M Kuo</au><au>Y -J Lee</au><au>X Li</au><au>Lim, S</au><au>C -H Lin</au><au>Liyanage, N</au><au>Long, E</au><au>Z Lu</au><au>Markowitz, P</au><au>Marukyan, H</au><au>Mihovilovic, M</au><au>Monaghan, P</au><au>Montgomery, R</au><au>Morrison, D</au><au>Mkrtchyan, H</au><au>C Munoz Camacho</au><au>Nattrass, C</au><au>Nouicer, R</au><au>Paganis, S</au><au>Papandreou, Z</au><au>Paus, C</au><au>Phelps, W</au><au>Purschke, M L</au><au>Putschke, J</au><au>Rajput-Ghoshal, R</au><au>Raue, B</au><au>Read, K</au><au>Ron, G</au><au>Rosati, M</au><au>Ryu, J</au><au>Santiesteban, N</au><au>Santos, R</au><au>Sarsour, M</au><au>Schambach, J</au><au>Schmidt, A</au><au>Schmidt, N</au><au>Simmerling, P</au><au>Sirca, S</au><au>Shi, Z</au><au>C -W Shih</au><au>Shimizu, S</au><au>Shrestha, U</au><au>Slifer, K</au><au>Soltz, R</au><au>Song, J</au><au>Sun, P</au><au>Sun, X</au><au>Suresh, K</au><au>W -C Tang</au><au>Timmins, A</au><au>Trotta, N</au><au>Tveter, T S</au><au>Usman, A</au><au>van Hecke, H W</au><au>Wang, Q</au><au>Watts, D P</au><au>Wickramaarachchi, N</au><au>Wood, M H</au><au>Xiao, Z</au><au>Yang, Y</au><au>Zajc, W A</au><au>Zhang, J</au><au>Zheng, X</au><au>Zhuang, P</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>ECCE Sensitivity Studies for Single Hadron Transverse Single Spin Asymmetry Measurements</atitle><jtitle>arXiv.org</jtitle><date>2022-07-22</date><risdate>2022</risdate><eissn>2331-8422</eissn><abstract>We performed feasibility studies for various single transverse spin measurements that are related to the Sivers effect, transversity and the tensor charge, and the Collins fragmentation function. The processes studied include semi-inclusive deep inelastic scattering (SIDIS) where single hadrons (pions and kaons) were detected in addition to the scattered DIS lepton. The data were obtained in {\sc pythia}6 and {\sc geant}4 simulated e+p collisions at 18 GeV on 275 GeV, 18 on 100, 10 on 100, and 5 on 41 that use the ECCE detector configuration. Typical DIS kinematics were selected, most notably \(Q^2 &gt; 1 \) GeV\(^2\), and cover the \(x\) range from \(10^{-4}\) to \(1\). The single spin asymmetries were extracted as a function of \(x\) and \(Q^2\), as well as the semi-inclusive variables \(z\), and \(P_T\). They are obtained in azimuthal moments in combinations of the azimuthal angles of the hadron transverse momentum and transverse spin of the nucleon relative to the lepton scattering plane. The initially unpolarized MonteCarlo was re-weighted in the true kinematic variables, hadron types and parton flavors based on global fits of fixed target SIDIS experiments and \(e^+e^-\) annihilation data. The expected statistical precision of such measurements is extrapolated to 10 fb\(^{-1}\) and potential systematic uncertainties are approximated given the deviations between true and reconstructed yields. The impact on the knowledge of the Sivers functions, transversity and tensor charges, and the Collins function has then been evaluated in the same phenomenological extractions as in the Yellow Report. The impact is found to be comparable to that obtained with the parameterized Yellow Report detector and shows that the ECCE detector configuration can fulfill the physics goals on these quantities.</abstract><cop>Ithaca</cop><pub>Cornell University Library, arXiv.org</pub><doi>10.48550/arxiv.2207.10890</doi><oa>free_for_read</oa></addata></record>
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subjects Asymmetry
Configurations
Feasibility studies
Flavor (particle physics)
Hadrons
Inelastic scattering
Kaons
Kinematics
Leptons
Partons
Pions
Sensors
Tensors
Transverse momentum
title ECCE Sensitivity Studies for Single Hadron Transverse Single Spin Asymmetry Measurements
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