Finite-Time Thermodynamics of an Autonomous Information Machine
arXiv:2604.15953
Abstract
While externally driven information engines are well understood, the thermodynamic constraints of their autonomous counterparts remain an open question. Here, we investigate the finite-time operation of an autonomous machine functioning as both an information eraser and a refrigerator, revealing that its irreversibility is bounded by the transient information geometry. Beyond steady-state boundaries, we map the landscape of optimal operation times across both functional modes, uncovering a unique synergistic regime where erasure power and efficiency increase simultaneously. Fundamentally, this performance is governed by a trade-off relation, , where is the operational speed and denotes an information-geometric distance. Our findings pave the way for optimizing fast autonomous information-energy conversion.
6 pages,3 figures. Comments are welcome! For more relevant studies, refer to our homepage [https://yhmayyds.group/]