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exciton properties in 2d-xenes nanomaterials within quantum field approaches
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نویسنده
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jahanshir arezu
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منبع
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journal of particle science and technology - 2021 - دوره : 7 - شماره : 2 - صفحه:59 -71
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چکیده
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There have been substantial theoretical advances in the field of condensed matterphysics in recent years. these significant developments have spanned many differentprinciples. for example, accelerated research into understanding how quantum fieldtheory is connected to physics has attracted a lot of attention from other domains.in particular, exciton and magnetoexciton coupled systems are popular due to theircompatibility with experimental research. this study investigated and presented atheoretical description of electron-hole–photon interactions and excitonization in amicrocavity nano-quantum environment based on qed, qft, and quanto-relativisticbehavior of the electron-hole coupled system. this work represents conversion,a main theoretical and applied physics subject, including electronic technologies,electro-photo catalysts, super batteries capacitors, qubits, quantum computation, andmagneto-excitonic solar cells. the quanto-relativistic mass and the coupled electronholesystems were investigated using the rytova-keldysh and coulomb potential ina free exciton system. the ground and excited coupled state energy and mass of freeexciton as an atomic system in the oscillator explanation of a symplectic group weredetermined. this projective method is in line with other theoretical methods and couldbe useful to study and predicate several different multi-excitons exotic systems anddetermine the angular velocity of exotic coupled states and relativistic mass of particles,which is important in mono elemental or non-mono elemental nanolayers materials.
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کلیدواژه
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coupled states ,magnetoexciton ,mass spectrum ,relativistic correction ,rytova–keldysh potential
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آدرس
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buein zahra technical university, department of physics and engineering sciences, iran
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پست الکترونیکی
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jahanshir@bzte.ac.ir
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Authors
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