兰道尔原理和相对论通信场景中的第二定律
Yuri J Alvim1, Lucas C Céleri1
1QPequi Group, Institute of Physics, Federal University of Goiás, Goiânia 74690-900, Goiás, Brazil.
Entropy (Basel, Switzerland)
|July 26, 2024
概括
这项研究将信息理论与相对论热力学相结合,建立了一个信息获取工作. 它量化了在相对论通信场景中获取信息的能源成本.
科学领域:
- 相对论热力学相对论热力学
- 信息理论是信息理论.
- 一般相对论一般相对论.
背景情况:
- 在相对论情景中制定热力学是一个未解决的挑战,因为空间时间的动态.
- 信息的物理性质和兰道尔原理表明信息理论的作用.
研究的目的:
- 探索信息理论与相对论热力学之间的联系.
- 为了确定一个运行由相对论设置中的信息驱动的热发动机的接收器可提取的最大工作.
主要方法:
- 在一般的洛伦兹时空中,被认为是两个方之间的相对论通信任务.
- 应用了兰道尔原理和热力学第二定律.
- 假设局部热发动机由接收器操作的信息提供动力.
主要成果:
- 确定了获取信息的能源成本的界限.
- 导出边界取决于时空度量和通信通道属性.
结论:
- 信息理论为理解相对论热力学提供了一个框架.
- 在相对论通信中,获取信息存在一个可量化的能源成本.
更多相关视频
相关概念视频
Principle of Equivalence
2.2K
According to Albert Einstein (1897-1955), free-falling and feeling weightless are intrinsically linked. If a person were in free-fall under gravity, for example, diving towards the Earth from an airplane, they would feel completely weightless. Similarly, a person descending in a lift may feel partially weightless. Broadly speaking, it is assumed that an object in a uniform gravitational field and an object undergoing constant acceleration in the absence of gravity are under the same...
2.2K
Principle of Linear Impulse and Momentum for a System of Particles
257
In the context of a system of particles moving relative to an inertial frame of reference, the equation of motion is a crucial tool for understanding the dynamics of the system. This equation, which accounts for external forces acting on each particle, plays a fundamental role in describing the system's behavior.
Notably, internal forces between particles, occurring in equal and opposite collinear pairs, cancel out and are not part of the equation of motion. This exclusion simplifies the...
Notably, internal forces between particles, occurring in equal and opposite collinear pairs, cancel out and are not part of the equation of motion. This exclusion simplifies the...
257
Zeroth Law of Thermodynamics
5.0K
Experimentally, if object A is in equilibrium with object B, and object B is in equilibrium with object C, then object A is in equilibrium with object C. That statement of transitivity is called the "zeroth law of thermodynamics." For example, a cold metal block and a hot metal block are both placed on a metal plate at room temperature. Eventually, the cold block and the plate will be in thermal equilibrium. In addition, the hot block and the plate will be in thermal equilibrium.
5.0K
The Second Law of Thermodynamics
5.3K
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...
5.3K
Space-Time Curvature and the General Theory of Relativity
2.7K
In 1905, Albert Einstein published his special theory of relativity. According to this theory, no matter in the universe can attain a speed greater than the speed of light in a vacuum, which thus serves as the speed limit of the universe.
This has been verified in many experiments. However, space and time are no longer absolute. Two observers moving relative to one another do not agree on the length of objects or the passage of time. The mechanics of objects based on Newton's laws of...
This has been verified in many experiments. However, space and time are no longer absolute. Two observers moving relative to one another do not agree on the length of objects or the passage of time. The mechanics of objects based on Newton's laws of...
2.7K
Entropy and the Second Law of Thermodynamics
2.8K
The second law of thermodynamics can be stated quantitatively using the concept of entropy. Entropy is the measure of disorder of the system.
The relation between entropy and disorder can be illustrated with the example of the phase change of ice to water. In ice, the molecules are located at specific sites giving a solid state, whereas, in a liquid form, these molecules are much freer to move. The molecular arrangement has therefore become more randomized. Although the change in average...
The relation between entropy and disorder can be illustrated with the example of the phase change of ice to water. In ice, the molecules are located at specific sites giving a solid state, whereas, in a liquid form, these molecules are much freer to move. The molecular arrangement has therefore become more randomized. Although the change in average...
2.8K


