Information and thermodynamic properties of a non-Hermitian particle ensemble
arXiv:2101.04803 · doi:10.1002/qua.26645
Abstract
In the context of non-relativistic quantum mechanics, we investigated Shannon's entropy of a non-Hermitian system to understand how this quantity is modified with the cyclotron frequency. Subsequently, we turn our attention to the construction of an ensemble of these spinless particles in the presence of a uniform magnetic field. Then, we study the thermodynamic properties of the model. Finally, we show how Shannon's entropy and thermodynamic properties are modified with the action of the magnetic field.
19 pages, 14 figures. To appear in International Journal of Quantum Chemistry
References in corpus (7)
- Making Sense of Non-Hermitian Hamiltonians
- PT-symmetry breaking and laser-absorber modes in optical scattering systems
- Continuous-variable quantum cryptography is secure against non-gaussian attacks
- Bifurcation diagram and pattern formation in superconducting wires with electric currents
- Exceptional Points in a Microwave Billiard with Time-Reversal Invariance Violation
- Thermal Properties of Deng-Fan-Eckart Potential model using Poisson Summation Approach
- Armchair graphene nanoribbons: PT-symmetry breaking and exceptional points without dissipation
Cited by in corpus (5)
- Quantum information of the Aharanov-Bohm ring with Yukawa interaction in the presence of disclination
- Exact solutions for time-dependent non-Hermitian oscillators: classical and quantum pictures
- Statistical properties of linear Majorana fermions
- Phase transitions in the logarithmic Maxwell O(3)-sigma model
- Quantum-information theory of magnetic field influence on circular dots with different boundary conditions