Reible, Benedikt M. and Djurdjevac, Ana and Delle Site, Luigi (2025) Chemical potential and variable number of particles control the quantum state: Quantum oscillators as a showcase. APL Quantum, 2 (1).
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Official URL: https://doi.org/10.1063/5.0251102
Abstract
Despite their simplicity, quantum harmonic oscillators are ubiquitous in the modeling of physical systems. They are able to capture universal properties that serve as references for the more complex systems found in nature. In this spirit, we apply a model of a Hamiltonian for open quantum systems in equilibrium with a particle reservoir to ensembles of quantum oscillators. By treating (i) a dilute gas of vibrating particles and (ii) a chain of coupled oscillators as showcases, we demonstrate that the property of varying numbers of particles leads to a mandatory condition on the energy of the system. In particular, the chemical potential plays the role of a parameter of control that can externally manipulate the spectrum of a system and the corresponding accessible quantum states.
Item Type: | Article |
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Subjects: | Mathematical and Computer Sciences Mathematical and Computer Sciences > Mathematics Mathematical and Computer Sciences > Mathematics > Applied Mathematics |
Divisions: | Department of Mathematics and Computer Science > Institute of Mathematics |
ID Code: | 3255 |
Deposited By: | Lukas-Maximilian Jaeger |
Deposited On: | 14 Mar 2025 12:14 |
Last Modified: | 14 Mar 2025 12:15 |
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