论文标题
在奥托引擎中通过Q检测的统计突变收集的工作
Work harvesting by q-deformed statistical mutations in an Otto engine
论文作者
论文摘要
我们考虑使用具有$ Q $ $ Q $形式的量子振荡器工作物质和经典热浴的半古典热发动机。我们研究了量子统计变形参数$ q $对发动机的工作和效率的影响。在通常的热发动机中,在工作注入和提取阶段,哈密顿参数变化,而工作物质的量子统计特征保持固定。我们指出,即使哈密顿参数没有变化,也可以通过工作物质的量子统计变化来收获工作。使用工作物质的量子统计突变从热资源中提取工作,使半经典的发动机循环无需任何经典的类似物。作为具有深刻量子特征的半古典热发动机的具体示例,我们考虑了Otto循环,并使用变形参数来定义等体步骤,同时使Hamiltonian参数保持恒定。我们验证我们的结论适用于骨气和费米子振荡器的变形。
We consider a semi-classical heat engine with a $q$-deformed quantum oscillator working substance and classical thermal baths. We investigate the influence of the quantum statistical deformation parameter $q$ on the work and efficiency of the engine. In usual heat engines, a Hamiltonian parameter is varied during the work injection and extraction stages while the quantum statistical character of the working substance remains fixed. We point out that even if the Hamiltonian parameters are not changing, work can be harvested by quantum statistical changes of the working substance. Work extraction from thermal resources using quantum statistical mutations of the working substance makes a semi-classical engine cycle without any classical analog. As a concrete example of such a semi-classical heat engine with a profound quantum character, we consider the Otto cycle and use the deformation parameter to define the isentropic steps while keeping the Hamiltonian parameters constant. We verify that our conclusion applies to both bosonic and fermionic oscillator deformations.