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相关概念视频

Entropy02:39

Entropy

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Salt particles that have dissolved in water never spontaneously come back together in solution to reform solid particles. Moreover, a gas that has expanded in a vacuum remains dispersed and never spontaneously reassembles. The unidirectional nature of these phenomena is the result of a thermodynamic state function called entropy (S). Entropy is the measure of the extent to which the energy is dispersed throughout a system, or in other words, it is proportional to the degree of disorder of a...
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Atomic Nuclei: Nuclear Spin State Population Distribution01:14

Atomic Nuclei: Nuclear Spin State Population Distribution

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Near absolute zero temperatures, in the presence of a magnetic field, the majority of nuclei prefer the lower energy spin-up state to the higher energy spin-down state. As temperatures increase, the energy from thermal collisions distributes the spins more equally between the two states. The Boltzmann distribution equation gives the ratio of the number of spins predicted in the spin −½ (N−) and spin +½ (N+) states.
916
Entropy Change in Reversible Processes01:10

Entropy Change in Reversible Processes

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In the Carnot engine, which achieves the maximum efficiency between two reservoirs of fixed temperatures, the total change in entropy is zero. The observation can be generalized by considering any reversible cyclic process consisting of many Carnot cycles. Thus, it can be stated that the total entropy change of any ideal reversible cycle is zero.
The statement can be further generalized to prove that entropy is a state function. Take a cyclic process between any two points on a p-V diagram.
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Spin–Spin Coupling Constant: Overview01:08

Spin–Spin Coupling Constant: Overview

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In bromoethane, the three methyl protons are coupled to the two methylene protons that are three bonds away. In accordance with the n+1 rule, the signal from the methyl protons is split into three peaks with 1:2:1 relative intensities. The methylene protons appear as a quartet, with the relative intensities of 1:3:3:1.
Qualitatively, any spin plus-half nucleus polarizes the spins of its electrons to the minus-half state. Consequently, the paired electron in the hydrogen–carbon bond must...
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The Second Law of Thermodynamics01:14

The Second Law of Thermodynamics

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In the quest to identify a property that may reliably predict the spontaneity of a process, a promising candidate has been identified: entropy. Scientists refer to the measure of randomness or disorder within a system as entropy. High entropy means high disorder and low energy. To better understand entropy, think of a student’s bedroom. If no energy or work were put into it, the room would quickly become messy. It would exist in a very disordered state, one of high entropy. Energy must be...
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Atomic Nuclei: Nuclear Spin State Overview01:03

Atomic Nuclei: Nuclear Spin State Overview

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NMR-active nuclei have energy levels called 'spin states' that are associated with the orientations of their nuclear magnetic moments. In the absence of a magnetic field, the nuclear magnetic moments are randomly oriented, and the spin states are degenerate. When an external magnetic field is applied, the spin states have only 2 + 1 orientations available to them. A proton with = ½ has two available orientations. Similarly, for a quadrupolar nucleus with a nuclear spin value of...
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Experimental Methods for Spin- and Angle-Resolved Photoemission Spectroscopy Combined with Polarization-Variable Laser
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Experimental Methods for Spin- and Angle-Resolved Photoemission Spectroscopy Combined with Polarization-Variable Laser

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对于被的量子混沌旋转-1/2链的随机矩阵纠统计数据的偏差.

Tabea Herrmann1, Roland Brandau1, Arnd Bäcker1

  • 1TU Dresden, Institute of Theoretical Physics and Center for Dynamics, 01062 Dresden, Germany.

Physical review. E
|February 20, 2025
PubMed
概括

量子混沌系统通常遵循随机矩阵理论. 然而,被的旋转-1/2链显示了固态纠分布的偏差,这表明这些多体系统的标准随机矩阵集合的局限性.

科学领域:

  • 量子力学就是量子力学.
  • 多体系统是多体系统.
  • 这是量子混沌.

背景情况:

  • 量子混沌多体系统的统计性质预计将随着系统大小的增加接近随机矩阵理论.
  • 在这些系统中, Eigenstate 纠是关键的统计属性.

研究的目的:

  • 在被的旋转-1/2链模型中研究自身状态纠的行为.
  • 为了确定这些系统是否符合随机矩阵理论的预测.

主要方法:

  • 对各种的旋转1/2链模型的分析.
  • 自身状态纠分布与随机矩阵结果的比较.
  • 探讨一个具有全对全相互作用的张量-产物随机矩阵模型.

主要成果:

  • 随着系统大小的增加,被的自旋-1/2链中的平均固态纠接近随机矩阵结果.
  • 固态纠的分布显示出与随机矩阵预测的显著偏差,即使在杂乱系统中.
  • 在张量产品随机矩阵模型中观察到类似的偏差.

结论:

  • 固态纠的偏差归因于这些多体系统中希尔伯特空间的张量积结构.

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  • 标准的随机矩阵组合可能无法充分描述被的旋转-1/2链模型的统计特性.
  • 这一发现对理解复杂量子系统中的量子混沌有意义.