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  4. Bounds on nonequilibrium fluctuations for asymmetrically driven quantum Otto engines
 
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Bounds on nonequilibrium fluctuations for asymmetrically driven quantum Otto engines

Source
Physical Review E
ISSN
24700045
Date Issued
2023-07-01
Author(s)
Mohanta, Sandipan
Saha, Madhumita
Venkatesh, B. Prasanna  
Agarwalla, Bijay Kumar
DOI
10.1103/PhysRevE.108.014118
Volume
108
Issue
1
Abstract
For a four-stroke asymmetrically driven quantum Otto engine with working medium modeled by a single qubit, we study the bounds on nonequilibrium fluctuations of work and heat. We find strict relations between the fluctuations of work and individual heat for hot and cold reservoirs in arbitrary operational regimes. Focusing on the engine regime, we show that the ratio of nonequilibrium fluctuations of output work to input heat from the hot reservoir is both upper and lower bounded. As a consequence, we establish a hierarchical relation between the relative fluctuations of work and heat for both cold and hot reservoirs and further make a connection with the thermodynamic uncertainty relations. We discuss the fate of these bounds also in the refrigerator regime. The reported bounds, for such asymmetrically driven engines, emerge once both the time-forward and the corresponding reverse cycles of the engine are considered on an equal footing. We also extend our study and report bounds for a parametrically driven harmonic oscillator Otto engine.
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URI
https://d8.irins.org/handle/IITG2025/26743
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