Study of thermodynamics of a thermal electron in scattering

This work presents the study of the thermodynamic properties of thermal electrons participating in scattering events. This is necessary because scattering with a thermal electron in presence of a laser field was not studied yet and it reduces the complexity of event measurement (differential cross-s...

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Main Authors: Saddam Husain Dhobi, Jeevan Jyoti Nakarmi, Kishori Yadav, Suresh Prasad Gupta, Bibek Koirala, Arun Kumar Shah
Format: Article
Language:English
Published: Elsevier 2022-12-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844022036039
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author Saddam Husain Dhobi
Jeevan Jyoti Nakarmi
Kishori Yadav
Suresh Prasad Gupta
Bibek Koirala
Arun Kumar Shah
author_facet Saddam Husain Dhobi
Jeevan Jyoti Nakarmi
Kishori Yadav
Suresh Prasad Gupta
Bibek Koirala
Arun Kumar Shah
author_sort Saddam Husain Dhobi
collection DOAJ
description This work presents the study of the thermodynamic properties of thermal electrons participating in scattering events. This is necessary because scattering with a thermal electron in presence of a laser field was not studied yet and it reduces the complexity of event measurement (differential cross-section). To study thermodynamic properties, the authors model the thermal Hamiltonian in presence of a laser field and used it to study the thermodynamic properties using the partition function. The study shows thermodynamic energy, around the target with distance at field amplitude 0.1 a.u. to 0.9 a.u. has destructive interference, above field amplitude 1 a.u. to 2.5 a.u. has superposition and at field amplitude 2.5 a.u. and 3 a.u. have coulomb potential like nature. Also, thermodynamic energy with temperature was found constant except at field amplitude 2.5 a.u. and at field amplitude 2.5 a.u. destructive interference at 10 °C and 21 °C. The thermodynamical potential at field amplitude 0.1 to 3.5 a.u. found constant and above field amplitude 3.5 a.u. increased linearly when studied with respect to temperature at 10 Å. The thermal Hamiltonian increase sharply when thermal electrons enter in 1–5 Å, slowly in 5–10 Å and beyond 10 Å constant, and the thermal Hamiltonian nature is like coulomb potential.
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spelling doaj.art-b0b352bc7cb34ac687115665087bae2e2023-01-05T08:39:53ZengElsevierHeliyon2405-84402022-12-01812e12315Study of thermodynamics of a thermal electron in scatteringSaddam Husain Dhobi0Jeevan Jyoti Nakarmi1Kishori Yadav2Suresh Prasad Gupta3Bibek Koirala4Arun Kumar Shah5Innovative Ghar Nepal, Lalitpur, 44700, Nepal; Robotics Academy of Nepal, Lalitpur, 44700, Nepal; Department of Physics Patan Multiple Campus, Tribhuvan University, Lalitpur, 44700, Nepal; Corresponding author.Innovative Ghar Nepal, Lalitpur, 44700, Nepal; Department of Physics Patan Multiple Campus, Tribhuvan University, Lalitpur, 44700, NepalInnovative Ghar Nepal, Lalitpur, 44700, Nepal; Department of Physics Patan Multiple Campus, Tribhuvan University, Lalitpur, 44700, NepalInnovative Ghar Nepal, Lalitpur, 44700, Nepal; Department of Physics Patan Multiple Campus, Tribhuvan University, Lalitpur, 44700, NepalInnovative Ghar Nepal, Lalitpur, 44700, Nepal; Department of Physics Patan Multiple Campus, Tribhuvan University, Lalitpur, 44700, NepalDepartment of Physics Patan Multiple Campus, Tribhuvan University, Lalitpur, 44700, NepalThis work presents the study of the thermodynamic properties of thermal electrons participating in scattering events. This is necessary because scattering with a thermal electron in presence of a laser field was not studied yet and it reduces the complexity of event measurement (differential cross-section). To study thermodynamic properties, the authors model the thermal Hamiltonian in presence of a laser field and used it to study the thermodynamic properties using the partition function. The study shows thermodynamic energy, around the target with distance at field amplitude 0.1 a.u. to 0.9 a.u. has destructive interference, above field amplitude 1 a.u. to 2.5 a.u. has superposition and at field amplitude 2.5 a.u. and 3 a.u. have coulomb potential like nature. Also, thermodynamic energy with temperature was found constant except at field amplitude 2.5 a.u. and at field amplitude 2.5 a.u. destructive interference at 10 °C and 21 °C. The thermodynamical potential at field amplitude 0.1 to 3.5 a.u. found constant and above field amplitude 3.5 a.u. increased linearly when studied with respect to temperature at 10 Å. The thermal Hamiltonian increase sharply when thermal electrons enter in 1–5 Å, slowly in 5–10 Å and beyond 10 Å constant, and the thermal Hamiltonian nature is like coulomb potential.http://www.sciencedirect.com/science/article/pii/S2405844022036039Thermodynamic propertiesThermal electronElastic scattering laser fieldScatteringPartition function etc.
spellingShingle Saddam Husain Dhobi
Jeevan Jyoti Nakarmi
Kishori Yadav
Suresh Prasad Gupta
Bibek Koirala
Arun Kumar Shah
Study of thermodynamics of a thermal electron in scattering
Heliyon
Thermodynamic properties
Thermal electron
Elastic scattering laser field
Scattering
Partition function etc.
title Study of thermodynamics of a thermal electron in scattering
title_full Study of thermodynamics of a thermal electron in scattering
title_fullStr Study of thermodynamics of a thermal electron in scattering
title_full_unstemmed Study of thermodynamics of a thermal electron in scattering
title_short Study of thermodynamics of a thermal electron in scattering
title_sort study of thermodynamics of a thermal electron in scattering
topic Thermodynamic properties
Thermal electron
Elastic scattering laser field
Scattering
Partition function etc.
url http://www.sciencedirect.com/science/article/pii/S2405844022036039
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