The Behavior of Heat Flow and Temperature under Quantum-Relativistic Conditions

In this article, the effect and behaviour of ultra-high-velocity heat motion are described. The ultra-high velocity of heat conduction in a system composed of particles in gas form is viewed as the motion of particles that aligns with the principles of thermodynamics, the theory of relativity, and q...

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Main Author: Arezu Jahanshir
Format: Article
Language:English
Published: Semnan University 2024-06-01
Series:Journal of Heat and Mass Transfer Research
Subjects:
Online Access:https://jhmtr.semnan.ac.ir/article_8616_1353fade48213f11ebf8441171227921.pdf
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author Arezu Jahanshir
author_facet Arezu Jahanshir
author_sort Arezu Jahanshir
collection DOAJ
description In this article, the effect and behaviour of ultra-high-velocity heat motion are described. The ultra-high velocity of heat conduction in a system composed of particles in gas form is viewed as the motion of particles that aligns with the principles of thermodynamics, the theory of relativity, and quantum physics theory. An alternative method for ultra-high velocity heat conduction has been developed and explained. This method has been achieved by using the Lowrance invariant of the microscopic environment in Makowski spacetime, hence both quantum and relativistic concepts are used, presenting a quantum-relativistic environment. The average number of field quanta has been obtained based on the relativistic effect, which is connected with the constituent mass of particles and determines the density matrix of a quantum oscillator. The presented relativistic heat conduction model is theoretically consistent with many important laws of physics and provides a more accurate representation of heat conduction in many technologically important situations.
format Article
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issn 2345-508X
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language English
publishDate 2024-06-01
publisher Semnan University
record_format Article
series Journal of Heat and Mass Transfer Research
spelling doaj-art-5ab899b3b97f42fcbc565d11a823de172025-08-20T01:58:19ZengSemnan UniversityJournal of Heat and Mass Transfer Research2345-508X2383-30682024-06-01111536010.22075/jhmtr.2024.30976.14528616The Behavior of Heat Flow and Temperature under Quantum-Relativistic ConditionsArezu Jahanshir0Department of Physics and Engineering Sciences, Buein Zahra Technical University, Buein Zahra, 3451866391, IranIn this article, the effect and behaviour of ultra-high-velocity heat motion are described. The ultra-high velocity of heat conduction in a system composed of particles in gas form is viewed as the motion of particles that aligns with the principles of thermodynamics, the theory of relativity, and quantum physics theory. An alternative method for ultra-high velocity heat conduction has been developed and explained. This method has been achieved by using the Lowrance invariant of the microscopic environment in Makowski spacetime, hence both quantum and relativistic concepts are used, presenting a quantum-relativistic environment. The average number of field quanta has been obtained based on the relativistic effect, which is connected with the constituent mass of particles and determines the density matrix of a quantum oscillator. The presented relativistic heat conduction model is theoretically consistent with many important laws of physics and provides a more accurate representation of heat conduction in many technologically important situations.https://jhmtr.semnan.ac.ir/article_8616_1353fade48213f11ebf8441171227921.pdffourier' s lawlowrance invariantrelativistic conditionsspace-like timetemperaturethermodynamics
spellingShingle Arezu Jahanshir
The Behavior of Heat Flow and Temperature under Quantum-Relativistic Conditions
Journal of Heat and Mass Transfer Research
fourier' s law
lowrance invariant
relativistic conditions
space-like time
temperature
thermodynamics
title The Behavior of Heat Flow and Temperature under Quantum-Relativistic Conditions
title_full The Behavior of Heat Flow and Temperature under Quantum-Relativistic Conditions
title_fullStr The Behavior of Heat Flow and Temperature under Quantum-Relativistic Conditions
title_full_unstemmed The Behavior of Heat Flow and Temperature under Quantum-Relativistic Conditions
title_short The Behavior of Heat Flow and Temperature under Quantum-Relativistic Conditions
title_sort behavior of heat flow and temperature under quantum relativistic conditions
topic fourier' s law
lowrance invariant
relativistic conditions
space-like time
temperature
thermodynamics
url https://jhmtr.semnan.ac.ir/article_8616_1353fade48213f11ebf8441171227921.pdf
work_keys_str_mv AT arezujahanshir thebehaviorofheatflowandtemperatureunderquantumrelativisticconditions
AT arezujahanshir behaviorofheatflowandtemperatureunderquantumrelativisticconditions