We present a computational framework for canonical quantization in arbitrary inhomogeneous dielectric media by incorporating quantum electromagnetic effects into complex solutions of quantum Maxwell's equations. To do so, the proposed algorithm integrates and performs (1) numerical computation of normal modes and (2) evaluation of arbitrary products of ladder operators acting on multimode Fock states. The former is associated with Hermitian-Helmholtz linear systems using finite-element or finite-difference methods; consequently, the complete set of numerical normal modes diagonalizes the Hamiltonian operators up to floating-point precision. Its Hermiticity is retained, allowing its quantization. Then, we perform quantum numerical simul...
It is well known that Maxwell equations can be expressed in a unitary Schrodinger-Dirac representati...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
Summary form only given. The photon model of the quantum electromagnetic (EM) field has recently bee...
We present a computational framework for canonical quantization in arbitrary inhomogeneous dielectri...
We employ another approach to quantize electromagnetic fields in the coordinate space, instead of th...
We present a math-physics modeling approach called canonical quantization with numerical mode decomp...
In this thesis, a framework for cavity and waveguide quantum electrodynamic (CQED, and WQED, respect...
Variational quantum algorithms are one of the most promising methods that can be implemented on nois...
Playing a prominent role in communications, quantum science and laser physics, quantum nonlinear opt...
In this thesis, a computational electromagnetics framework for cavity and waveguide quantum electrod...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
We present a numerical framework of the new Langevin noise (LN) formalism [1,2] leveraging computati...
In this manuscript I show a selection of the principal theoretical and experimental studies develope...
We present a succinct way to quantize Maxwell's equations. We begin by discussing the random na...
Thesis (Ph.D.)--University of Washington, 2020Physics experiments are carefully designed to have pre...
It is well known that Maxwell equations can be expressed in a unitary Schrodinger-Dirac representati...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
Summary form only given. The photon model of the quantum electromagnetic (EM) field has recently bee...
We present a computational framework for canonical quantization in arbitrary inhomogeneous dielectri...
We employ another approach to quantize electromagnetic fields in the coordinate space, instead of th...
We present a math-physics modeling approach called canonical quantization with numerical mode decomp...
In this thesis, a framework for cavity and waveguide quantum electrodynamic (CQED, and WQED, respect...
Variational quantum algorithms are one of the most promising methods that can be implemented on nois...
Playing a prominent role in communications, quantum science and laser physics, quantum nonlinear opt...
In this thesis, a computational electromagnetics framework for cavity and waveguide quantum electrod...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
We present a numerical framework of the new Langevin noise (LN) formalism [1,2] leveraging computati...
In this manuscript I show a selection of the principal theoretical and experimental studies develope...
We present a succinct way to quantize Maxwell's equations. We begin by discussing the random na...
Thesis (Ph.D.)--University of Washington, 2020Physics experiments are carefully designed to have pre...
It is well known that Maxwell equations can be expressed in a unitary Schrodinger-Dirac representati...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
Summary form only given. The photon model of the quantum electromagnetic (EM) field has recently bee...