一般化乱平均值和运行和动粒子的当前波动
Stephy Jose1, Alberto Rosso2, Kabir Ramola1
1Tata Institute of Fundamental Research, Hyderabad 500046, India.
Physical review. E
|December 20, 2023
概括
我们分析了单维运行和的粒子系统中的波动. 化磁化显著抑制电流波动,与化系统不同,显示出不同的短时间行为.
科学领域:
- 统计力学 统计力学
- 软物质物理学 软物质物理学
- 非平衡系统 非平衡系统
背景情况:
- 活性物质系统由于固有的自由度而表现出复杂的行为.
- 在非平衡统计力学中,了解粒子运输和波动至关重要.
- 跑动粒子是生物和合成活性物质的关键模型.
研究的目的:
- 在一维运行和系统中获得粒子电流波动的确切结果.
- 为了研究化与化障碍对这些波动的影响.
- 分析密度和磁化场的不同行为.
主要方法:
- 准确的分析计算粒子数的波动.
- 介绍密度和磁化场的一般化失序平均值.
- 在各种初始条件下执行冷和冷平均值.
主要成果:
- 电流的变量显示出明显的短时间依赖性:线性 (冷却) 与二次性 (灭).
- 在这两种情景中,在很大时间的波动中出现了普遍的sqrt[t]行为.
- 严格灭的系统,具有结密度和磁化,表现出强烈抑制的电流波动.
结论:
- 密度和磁化场之间的相互作用对活性物质的当前波动产生了关键的影响.
- 灭磁化场对波动的影响比仅灭密度场更为深远.
- 这些发现提供了关于运输现象的被动和主动系统之间的基本差异的见解.
更多相关视频
11:51Visually Based Characterization of the Incipient Particle Motion in Regular Substrates: From Laminar to Turbulent Conditions
Published on: February 22, 2018
8.7K
11:03An Analog Macroscopic Technique for Studying Molecular Hydrodynamic Processes in Dense Gases and Liquids
Published on: December 4, 2017
8.6K
相关概念视频
Distribution of Molecular Speeds
4.0K
The motion of molecules in a gas is random in magnitude and direction for individual molecules, but a gas of many molecules has a predictable distribution of molecular speeds. This predictable distribution of molecular speeds is known as the Maxwell-Boltzmann distribution. The distribution of molecular speeds in liquids is comparable to that of gases but not identical and can help to understand the phenomenon of the boiling and vapor pressure of a liquid. Consider that a molecule requires a...
4.0K
Random Error
893
Random or indeterminate errors originate from various uncontrollable variables, such as variations in environmental conditions, instrument imperfections, or the inherent variability of the phenomena being measured. Usually, these errors cannot be predicted, estimated, or characterized because their direction and magnitude often vary in magnitude and direction even during consecutive measurements. As a result, they are difficult to eliminate. However, the aggregate effect of these errors can be...
893
Entropy
30.2K
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...
30.2K
Equilibrium Conditions for a Particle
1.2K
When an object is in equilibrium, it is either at rest or moving with a constant velocity. There are two types of equilibrium: static and dynamic. Static equilibrium occurs when an object is at rest, while dynamic equilibrium occurs when an object is moving with a constant velocity. In both cases, there must be a balance of forces acting on the object.
To understand the concept of equilibrium, let us first consider the forces acting on an object. When different forces act on an object, they can...
To understand the concept of equilibrium, let us first consider the forces acting on an object. When different forces act on an object, they can...
1.2K
Propagation of Uncertainty from Systematic Error
528
The atomic mass of an element varies due to the relative ratio of its isotopes. A sample's relative proportion of oxygen isotopes influences its average atomic mass. For instance, if we were to measure the atomic mass of oxygen from a sample, the mass would be a weighted average of the isotopic masses of oxygen in that sample. Since a single sample is not likely to perfectly reflect the true atomic mass of oxygen for all the molecules of oxygen on Earth, the mass we obtain from this...
528
First Law: Particles in One-dimensional Equilibrium
6.9K
Newton's first law of motion states that a body at rest remains at rest, or if in motion, remains in motion at constant velocity, unless acted on by a net external force. It also states that there must be a cause for any change in velocity (a change in either magnitude or direction) to occur. This cause is a net external force. For example, consider what happens to an object sliding along a rough horizontal surface. The object quickly grinds to a halt, due to the net force of friction. If...
6.9K
