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[BOK][B] The Jaynes–Cummings model and its descendants: modern research directions
J Larson, T Mavrogordatos - 2021 - iopscience.iop.org
The Jaynes–Cummings Model (JCM) has recently been receiving increased attention as
one of the simplest, yet intricately nonlinear, models of quantum physics. Emphasising the …
one of the simplest, yet intricately nonlinear, models of quantum physics. Emphasising the …
Quantum information processing with superconducting circuits: a review
G Wendin - Reports on Progress in Physics, 2017 - iopscience.iop.org
During the last ten years, superconducting circuits have passed from being interesting
physical devices to becoming contenders for near-future useful and scalable quantum …
physical devices to becoming contenders for near-future useful and scalable quantum …
Toward simulating quantum field theories with controlled phonon-ion dynamics: A hybrid analog-digital approach
Quantum field theories are the cornerstones of modern physics, providing relativistic and
quantum mechanical descriptions of physical systems at the most fundamental level …
quantum mechanical descriptions of physical systems at the most fundamental level …
Experimental quantum simulations of many-body physics with trapped ions
C Schneider, D Porras, T Schaetz - Reports on Progress in …, 2012 - iopscience.iop.org
Direct experimental access to some of the most intriguing quantum phenomena is not
granted due to the lack of precise control of the relevant parameters in their naturally …
granted due to the lack of precise control of the relevant parameters in their naturally …
Engineering an effective three-spin Hamiltonian in trapped-ion systems for applications in quantum simulation
Trapped-ion quantum simulators, in analog and digital modes, are considered a primary
candidate to achieve quantum advantage in quantum simulation and quantum computation …
candidate to achieve quantum advantage in quantum simulation and quantum computation …
Quantum Simulation of the Ultrastrong-Coupling Dynamics<? format?> in Circuit Quantum Electrodynamics
We propose a method to get experimental access to the physics of the ultrastrong-and deep-
strong-coupling regimes of light-matter interaction through the quantum simulation of their …
strong-coupling regimes of light-matter interaction through the quantum simulation of their …
Statistical properties of the two dimensional Feshbach–Villars oscillator (FVO) in the rotating cosmic string space–time
This paper focuses on the quantum mechanical dynamics of a massive and spinless
relativistic particle in space–time generated by a rotating cosmic string. The equations of …
relativistic particle in space–time generated by a rotating cosmic string. The equations of …
Quantum simulation of interacting fermion lattice models in trapped ions
We propose a method of simulating efficiently many-body interacting fermion lattice models
in trapped ions, including highly nonlinear interactions in arbitrary spatial dimensions and …
in trapped ions, including highly nonlinear interactions in arbitrary spatial dimensions and …
The thermal properties of a two-dimensional Dirac oscillator under an external magnetic field
In the language of creation and annihilation operators, we study a relativistic spin-1 2
fermion subject to a Dirac oscillator (DO) coupling and a constant magnetic field in both …
fermion subject to a Dirac oscillator (DO) coupling and a constant magnetic field in both …
The noncommutative quantum Hall effect with anomalous magnetic moment in three different relativistic scenarios
In the present paper, we investigate the bound-state solutions of the noncommutative
quantum Hall effect with anomalous magnetic moment in three different relativistic …
quantum Hall effect with anomalous magnetic moment in three different relativistic …