热噪声驱动的热机:噪声工作,同时它揭示了“量子热机的怪异”

L. Kish
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引用次数: 1

摘要

介绍了由电阻热噪声电压驱动的纯电热机。在这些发动机中,没有蒸汽,气体或燃烧,唯一的机械运动元件是活塞和谐振器(飞轮)。电阻器、电容器和电子控制开关是其他建筑元件。为了获得最佳性能,必须集成大量并行引擎以同步方式运行。在理想的情况下,在室温下,将25纳米尺寸的二维发动机集成在1平方英寸的硅芯片上,热源和冷槽之间的温差为20°C,将产生约1瓦的功率。这些发动机的几个标准和连贯(相关气缸状态)版本已经被引入,它们都可以在四冲程或二冲程模式下运行。相关热机提供了与相干量子热机相同类型的悖论,它们也解决了它们的悖论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal noise driven heat engines: Noise put to work, while it sheds light on “quantum heat engine weirdness”
Purely electrical heat engines driven by the thermal noise voltage of resistors are introduced. In these engines, there is no steam, gas or combustion and the only mechanically moving elements are the piston and resonator (flywheel). Resistors, capacitors and electronically controlled switches are the other building elements. For the best performance, a large number of parallel engines must be integrated to run in a synchronized fashion. At room temperature, in the idealistic case, a two-dimensional ensemble of engines of 25 nanometer size integrated on a 1 square-inch silicon chip with 20 °C temperature difference between the warm-source and the cold-sink would produce a power of about 1 Watt. Several standard and coherent (correlated-cylinder states) versions of these engines have been introduced and both of them can operate in either four-stroke or two-stroke modes. The correlated engines offer the same type of paradoxes as coherent quantum heat engines and they serve the solution of their paradox, too.
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