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舒海涛
, U! v5 Y% C& c' f8 z* d. C简介:+ @ N k2 ^( }0 B
舒海涛,华中师范大学教授、桂子学者(2025)、国家高层次人才计划引进人员(2025)。
$ Z; w# Z9 j6 O* v' q' b研究方向是通过格点量子色动力学计算:(i)强子的真空结构;(ii)高能重离子碰撞中产生的夸克胶子等离子体(QGP)的输运性质;(iii)重夸克偶素在QGP中的热效应。3 [! C6 {% F6 P6 l. {; p6 e: w
与合作者一道引入研究QGP输运性质的新方法,首次得到QGP中的重夸克扩散系数,为唯象/流体力学模型提供重要输入。+ _; u5 R" }1 n& z
通过格点量子色动力学计算证实依赖横动量的物理量(TMDs)的快度演化具有普适性,确定了质子的动量分布图像和依赖横动量的介子波函数。同时,研究兴趣也涵盖格点量子色动力学计算软件的开发与优化。
8 O9 S2 z3 z+ |- h: w教育背景:
1 h5 t9 }" k. C" c1 B2014 - 2018,华中师范大学理论物理学博士。% a! \# z9 U' D, D: m$ M1 n& k2 I
2012 - 2014,华中师范大学理论物理学硕士。
M! d2 D- i0 J; Q, x. v2008 - 2012,郑州大学物理学士。
8 j3 z- l4 N, U/ K工作经历:& Y: E, R4 |8 c$ n: T6 r# J) ?
2025 - 至今,华中师范大学教授,桂子学者。) m! G- x# e( X/ A1 A
2024 - 2025,华中师范大学副教授,桂子青年学者。* F5 r0 K5 U" T) ]
2023 – 2024,美国布鲁克海文国家实验,博士后。, U) n4 k- Q4 ]
2021 – 2023,德国Regensburg University,博士后。0 P5 j$ j4 c& b' q9 S
2018 – 2021,德国Bielefeld University,博士后。
0 l) P+ M7 g8 m& P近期文章:(5年)& C' i% }, D/ z& {
1. L. Altenkort, Ddl. Cruz, O. Kaczmarek, GD. Moore, H.-T. Shu , “Lattice B-field correlators for heavy quarks”, Phys.Rev.D 109 (2024) 11, 11: E) ?; M' ~! h" F2 q9 I+ v. ]4 c
2. L. Altenkort, Ddl. Cruz, O. Kaczmarek, R. Larsen, GD. Moore, Swagato Mukherjee, P. Petreczky, H.-T. Shu, S. Stendebach, “Quark Mass Dependence of Heavy Quark Diffusion Coefficient from Lattice QCD”, Phys.Rev.Lett. 132 (2024) 5, 051902
% @: L, O: k% [! z/ c. W3. M.-H. Chu, J.-C. He, J. Hua, J. Liang, X.-D. Ji, A. Schafer, H.-T. Shu, Y.-S. Su, J.-H. Wang, W. Wang, Y.-B. Yang, J. Zeng, J.-H. Zhang, Q.-A. Zhang , “Lattice calculation of the intrinsic soft function and the Collins-Soper kernel,” JHEP 08 (2023) 1725 i- P$ S, ?. ^, e
4. L. Mazur, D. Bollweg, DA. Clarke, L. Altenkort, O. Kaczmarek, R. Larsen, H.-T. Shu, J. Goswami, P. Scior, H. Sandmeyer, M. Neumann, H. Dick, S. Ali, J. Kim, C. Schmidt, P. Petreczky, Swagato Mukherjee , “SIMULATeQCD: A simple multi-GPU lattice code for QCD calculations,” Comput.Phys.Commun. 300 (2024) 109164
9 b6 z% q. I2 F! i9 I) i5. M.-H. Chu, J.-C. He, J. Hua, J. Liang, X.-D. Ji, A. Schafer, H.-T. Shu, Y.-S. Su, J.-H. Wang, W. Wang, Y.-B. Yang, J. Zeng, J.-H. Zhang, Q.-A. Zhang , “Transverse-momentum-dependent wave functions of the pion from lattice QCD,” Phys.Rev.D 109 (2024) 9, L0915030 T# r E2 ?! S, Y8 U
6. L. Altenkort, O. Kaczmarek, R. Larsen, Swagato Mukherjee, P. Petreczky, H.-T. Shu, S. Stendebach, “Heavy Quark Diffusion from 2+1 Flavor Lattice QCD with 320 MeV Pion Mass,” Phys.Rev.Lett. 130 (2023) 23, 231902" Z8 s; ]3 r. p) O+ \* M4 r* ~
7. H.-T. Shu, M. Schlemmer, T. Sizmann, A. Vladimirov, L. Walter, M. Engelhardt, A. Schäfer, Y.-B. Yang , “Universality of the Collins-Soper kernel in lattice calculations,” Phys.Rev.D 108 (2023) 7, 074519
8 }% Y. q6 o( z4 T8. L. Altenkort, AM. Eller, A. Francis, O. Kaczmarek, L. Mazur, GD. Moore, H.-T. Shu, “Viscosity of pure-glue QCD from the lattice,” Phys.Rev.D 108 (2023) 1, 014503
) x1 w& s3 M" V! {9. F. Yao, L. Walter, J.-W. Chen, J. Hua, X.-D. Ji, L.-C Jin, S. Lahrtz, L.-Q. Ma, P. Mohanta, A. Schäfer, H.-T. Shu, Y.-S. Su, P. Sun, X.-N. Xiong, Y.-B. Yang, J.-H. Zhang, “Nucleon Transversity Distribution in the Continuum and Physical Mass Limit from Lattice QCD,”Phys.Rev.Lett. 131 (2023) 26, 261901.
/ f" a( T& Y2 Z4 U) F10. L. Altenkort, AM. Eller, O. Kaczmarek, L. Mazur, GD. Moore, H.-T. Shu , “Lattice QCD noise reduction for bosonic correlators through blocking,” Phys.Rev.D 105 (2022) 9, 094505.# n9 I1 m: T7 q" o J8 o3 {2 A
11. H.-T. Ding, O. Kaczmarek, A.-L. Lorenz, H. Ohno, H. Sandmeyer, H.-T. Shu, “Charm and beauty in the deconfined plasma from quenched lattice QCD,” Phys.Rev.D 104 (2021) 11, 114508.
! p/ I# z- g i% Z7 q, Y$ T12. L. Altenkort, AM. Eller, O. Kaczmarek, L. Mazur, GD. Moore, H.-T. Shu , “Sphaleron rate from Euclidean lattice correlators: An exploration,” Phys.Rev.D 103 (2021) 11, 114513.
% [4 b7 V. `! w$ T13. L. Altenkort, AM. Eller, O. Kaczmarek, L. Mazur, GD. Moore, H.-T. Shu, “Heavy quark momentum diffusion from the lattice using gradient flow,” Phys.Rev.D 103 (2021) 1, 014511.8 q$ H, E& A: r
代表文章:
/ ~* P; m2 p. f9 O+ c- ~1. L. Altenkort, Ddl. Cruz, O. Kaczmarek, R. Larsen, GD. Moore, Swagato Mukherjee, P. Petreczky, H.-T. Shu, S. Stendebach, “Quark Mass Dependence of Heavy Quark Diffusion Coefficient from Lattice QCD”, Phys.Rev.Lett. 132 (2024) 5, 0519020 g: T3 r6 n4 |& D9 j* `. O
2. L. Mazur, D. Bollweg, DA. Clarke, L. Altenkort, O. Kaczmarek, R. Larsen, H.-T. Shu, J. Goswami, P. Scior, H. Sandmeyer, M. Neumann, H. Dick, S. Ali, J. Kim, C. Schmidt, P. Petreczky, Swagato Mukherjee , “SIMULATeQCD: A simple multi-GPU lattice code for QCD calculations,” Comput.Phys.Commun. 300 (2024) 109164
; X1 G7 o" [4 e3. L. Altenkort, O. Kaczmarek, R. Larsen, Swagato Mukherjee, P. Petreczky, H.-T. Shu, S. Stendebach, “Heavy Quark Diffusion from 2+1 Flavor Lattice QCD with 320 MeV Pion Mass,” Phys.Rev.Lett. 130 (2023) 23, 231902
$ Q5 i1 {2 K3 u9 _, y+ |) o4. H.-T. Shu, M. Schlemmer, T. Sizmann, A. Vladimirov, L. Walter, M. Engelhardt, A. Schäfer, Y.-B. Yang , “Universality of the Collins-Soper kernel in lattice calculations,” Phys.Rev.D 108 (2023) 7, 074519
! F3 y& w; ^1 I4 d5 g5. L. Altenkort, AM. Eller, A. Francis, O. Kaczmarek, L. Mazur, GD. Moore, H.-T. Shu, “Viscosity of pure-glue QCD from the lattice,” Phys.Rev.D 108 (2023) 1, 014503 |
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