论文标题

以有限时间擦除信息的热力学成本

The Thermodynamic Cost of Erasing Information in Finite-time

论文作者

Giorgini, L. T., Eichhorn, R., Das, M., Moon, W., Wettlaufer, J. S.

论文摘要

Landauer原理对必须消散的最小热量的基本热力学约束,以通过准稳定的缓慢协议消除一项逻辑信息。对于有限的时间信息擦除,热力学成本取决于逻辑内存的特定物理实现以及如何删除信息。在这里,我们将布朗粒子范式内的问题处理在对称双孔电势中。两个最小值代表逻辑位0和1的两个值,而粒子的位置是内存的当前状态。通过应用外部时间依赖性倾斜力来实现擦除协议。我们得出分析工具,以评估通过任意连续擦除协议在有限时间内删除经典信息所需的工作,这是实用应用的相关设置。重要的是,我们的方法不仅限于平均工作,而是访问了许多独立的擦除过程实现所产生的完整工作分布。使用擦除协议的共同示例,该协议随着时间的时间在双向抛物潜能上作用,我们明确计算所有相关数量并进行数值验证。

The Landauer principle sets a fundamental thermodynamic constraint on the minimum amount of heat that must be dissipated to erase one logical bit of information through a quasi-statically slow protocol. For finite time information erasure, the thermodynamic costs depend on the specific physical realization of the logical memory and how the information is erased. Here we treat the problem within the paradigm of a Brownian particle in a symmetric double-well potential. The two minima represent the two values of a logical bit, 0 and 1, and the particle's position is the current state of the memory. The erasure protocol is realized by applying an external time-dependent tilting force. We derive analytical tools to evaluate the work required to erase a classical bit of information in finite time via an arbitrary continuous erasure protocol, which is a relevant setting for practical applications. Importantly, our method is not restricted to the average work, but instead gives access to the full work distribution arising from many independent realizations of the erasure process. Using the common example of an erasure protocol that changes linearly with time acting on a double-parabolic potential, we explicitly calculate all relevant quantities and verify them numerically.

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