量子迁移及其局部热影响:了解局限系统的局部热容量
Altug Sisman1, Jonas Fransson1
1Department of Physics and Astronomy, <a href="https://ror.org/048a87296">Uppsala University</a>, Box 516, 751 21 Uppsala, Sweden.
Physical review. E
|October 19, 2024
概括
限制粒子中的温度诱导的量子迁移防止了负局部热容量. 这种量子现象重新分配热量,确保非负热容量,并引起局部加热/冷却效应.
科学领域:
- 热力学是一种热力学.
- 量子力学就是量子力学.
- 统计物理 统计物理
背景情况:
- 在有限体积中的非相互作用粒子在低温下表现出特殊的热力学行为.
- 局部能量的温度导数可以是负的,这表明非物理的负局部热容量.
- 了解局部热容量对于封闭系统至关重要.
研究的目的:
- 调查局部能量的负温度导数在封闭系统背后的潜在机制.
- 为了证明,尽管存在明显的矛盾,但局部热容量仍然不是负值.
- 阐明量子现象在受限粒子热力学特性中的作用.
主要方法:
- 在恒定体积中对非相互作用的粒子进行理论分析.
- 介绍和分析温度诱导的量子迁移.
- 检查局部能源波动及其与热容量的关系.
主要成果:
- 取决于温度的密度变化会诱导能量选择性的粒子传输 (温度诱导的量子迁移).
- 这种量子迁移重新分配局部热量,确保局部热量容量非负.
- 观察到局部加热/冷却效应,局部热容量大规模超标,全球热容量过剩.
结论:
- 温度诱导的量子迁移是一个宏观的量子现象,对封闭系统至关重要.
- 它解决了负局部热容量的明显悖论.
- 热容量和波动之间的线性关系在局部尺度上无效.
相关概念视频
Quantifying Heat
54.0K
Thermal Energy
54.0K
Heat Capacities of an Ideal Gas III
2.2K
The number of independent ways a gas molecule can move along straight line, rotate, and vibrate is called its degrees of freedom. Supposing d represents the number of degrees of freedom of an ideal gas, the molar heat capacity at constant volume of an ideal gas in terms of d is
2.2K
Heat Capacities of an Ideal Gas II
2.4K
For a system that undergoes a thermodynamic process at a constant volume condition, the heat absorbed is used only to increase the system's internal energy and not for doing any kind of work. While for a system undergoing a thermodynamic process under a constant pressure condition, the amount of heat absorbed is used not only for increasing the internal energy (as a function of temperature) but also for doing some work. The molar heat capacity is the amount of heat required to increase the...
2.4K
Heat Capacities of an Ideal Gas I
2.6K
Heat capacity is the ratio of heat absorbed by the substance corresponding to its temperature change. It is also called thermal capacity and the SI unit of heat capacity is J/K. Whereas, specific heat capacity is defined as the amount of heat necessary to change the temperature of 1 kg of a substance by 1 K and is also called massic heat capacity. Its SI unit is J/kg⋅K.
Molar heat capacity quantifies the ratio of the amount of heat added (or removed) to increase (or decrease) the...
Molar heat capacity quantifies the ratio of the amount of heat added (or removed) to increase (or decrease) the...
2.6K
Heat Flow and Specific Heat
5.3K
Heat is a type of energy transfer that is caused by a temperature difference, and it can change the temperature of an object. Since heat is a form of energy, its SI unit is the joule (J). Another common unit of energy often used for heat is the calorie (cal), which is defined as the energy needed to change the temperature of 1 g of water by 1 °C, specifically between 14.5 °C and 15.5 °C, since the energy needed shows a slight temperature dependence. Another commonly used unit is...
5.3K
States of Matter and Phase Changes
927
The internal energy of a substance—the total kinetic energy of all its molecules and the potential energy of their associated forces—depends on the strength of the intermolecular forces in the condensed phases and the pressure exerted on the substance. The internal energy of a substance is the highest in the gaseous state, the lowest in the solid state, and intermediate in the liquid state. Phase transitions are caused by changes in physical conditions, such as temperature and...
927


