Следене
Jianhui Wang
Jianhui Wang
Department of Physics, Nanchang Univerisity
Потвърден имейл адрес: ncu.edu.cn
Заглавие
Позовавания
Позовавания
Година
Efficiency at maximum power output of quantum heat engines under finite-time operation
J Wang, J He, Z Wu
Physical Review E 85 (3), 031145, 2012
822012
Efficiency at maximum power of a heat engine working with a two-level atomic system
R Wang, J Wang, J He, Y Ma
Physical Review E 87 (4), 042119, 2013
792013
Quantum Otto engine of a two-level atom with single-mode fields
J Wang, Z Wu, J He
Physical Review E 85 (4), 041148, 2012
772012
Performance analysis of a two-state quantum heat engine working with a single-mode radiation field in a cavity
J Wang, J He, X He
Physical Review E 84 (4), 041127, 2011
772011
Optimization on a three-level heat engine working with two noninteracting fermions in a one-dimensional box trap
J Wang, J He
Journal of Applied Physics 111 (4), 2012
672012
Efficiency at maximum power output of an irreversible Carnot-like cycle with internally dissipative friction
J Wang, J He
Physical Review E 86 (5), 051112, 2012
582012
Performance of a quantum heat engine cycle working with harmonic oscillator systems
JH Wang, JZ He, ZY Mao
Science in China Series G: Physics, Mechanics and Astronomy 50 (2), 163-176, 2007
562007
Performance analysis of a spin quantum heat engine cycle with internal friction
J Wang, J He, Y Xin
Physica Scripta 75 (2), 227, 2007
552007
Coefficient of performance for a low-dissipation Carnot-like refrigerator with nonadiabatic dissipation
Y Hu, F Wu, Y Ma, J He, J Wang, AC Hernández, JMM Roco
Physical Review E 88 (6), 062115, 2013
492013
Efficiency at maximum power of a quantum heat engine based on two coupled oscillators
JH Jianhui Wang, Zhuolin Ye, Yiming Lai, Weisheng Li
Phys. Rev. E 91 (6), 062134, 2015
482015
Finite-time performance of a quantum heat engine with a squeezed thermal bath
J Wang, J He, Y Ma
Physical Review E 100 (5), 052126, 2019
422019
Efficiency at maximum power of a quantum Otto cycle within finite-time or irreversible thermodynamics
F Wu, J He, Y Ma, J Wang
Physical Review E 90 (6), 062134, 2014
402014
Thermodynamics and finite-size scaling of homogeneous weakly interacting Bose gases within an exact canonical statistics
J Wang, Y Ma
Physical Review A 79 (3), 033604, 2009
372009
Performance of a multilevel quantum heat engine of an ideal N-particle Fermi system
R Wang, J Wang, J He, Y Ma
Physical Review E 86 (2), 021133, 2012
352012
Four-level refrigerator driven by photons
J. H. Wang, Y. M. Lai, Z. L. Ye, J. Z.He, Y. L. Ma, Q. H. Liao
Physical Review E 91 (5), 050102(R), 2015
27*2015
Quantum-mechanical engines working with an ideal gas with a finite number of particles confined in a power-law trap
W Jianhui, M Yongli, H Jizhou
EPL (Europhysics Letters), 111 (2), 20006, 2015
23*2015
Power statistics of Otto heat engines with the Mpemba effect
J Lin, K Li, J He, J Ren, J Wang
Physical Review E 105 (1), 014104, 2022
192022
Coefficient of performance under maximum χ criterion in a two-level atomic system as a refrigerator
Y Yuan, R Wang, J He, Y Ma, J Wang
Physical Review E 90 (5), 052151, 2014
182014
Fluctuations in irreversible quantum Otto engines
G Jiao, S Zhu, J He, Y Ma, J Wang
Physical Review E 103 (3), 032130, 2021
152021
Condensate fluctuations of interacting Bose gases within a microcanonical ensemble
J Wang, J He, Y Ma
Physical Review E 83 (5), 051132, 2011
152011
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