Article citationsMore>>
Scully, M.O., Chapin, K.R., Dorfman, K.E., Kim, M.B. and Svidzinsky, A. (2011) Quantum Heat Engine Power Can Be Increased by Noise-Induced Coherence. Proceedings of the National Academy of Sciences of the United States of America, 108, 15097-15100.
http://dx.doi.org/10.1073/pnas.1110234108
has been cited by the following article:
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TITLE:
Two Scenarios on the Relativistic Quantum Heat Engine
AUTHORS:
Agus Purwanto, Heru Sukamto, Bintoro Anang Subagyo, Muhammad Taufiqi
KEYWORDS:
Quantum Heat Engine, Relativistic, Scenario
JOURNAL NAME:
Journal of Applied Mathematics and Physics,
Vol.4 No.7,
July
28,
2016
ABSTRACT: We compare two different scenarios at relativistic quantum heat engine by considering three-level energy, and two non-interacting fermion in one-dimensional potential well. The difference between the scenarios is about mechanism to get into excited state by two fermions. We apply iso-energetic cycle that consists of two iso-energetic and two iso-entropic processes, and then compute and compare the efficiency at both scenarios. We also compare it with non-relativistic case. The result is that one scenario has larger efficiency than the other that does not happen at non-relativistic case.