We present a math-physics modeling approach called canonical quantization with numerical mode decomposition for capturing the physics of how incoming photons interact with finite-sized dispersive media, which is not describable by the previous Fano-diagonalization methods. The main procedure is to (1) study a system where electromagnetic fields are coupled to nonuniformly distributed Lorentz oscillators in Hamiltonian mechanics, (2) derive a generalized Hermitian eigenvalue problem for conjugate pairs in coordinate space, (3) apply computational electromagnetics methods to find a countably finite set of time-harmonic eigenmodes that diagonalizes the Hamiltonian, and (4) perform the subsequent canonical quantization with mode decomposition. ...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
A Hamiltonian framework is developed for a sequence of ultrashort optical pulses propagating in a no...
The canonical method is invoked to quantize dissipative systems using the WKB approximation. The wav...
We present a computational framework for canonical quantization in arbitrary inhomogeneous dielectri...
We present a Hamiltonian for electrodynamics in lossy, dispersive, magneto-electric media, and diago...
We find the action that describes the electromagnetic field in a spatially dispersive, homogeneous m...
The microscopic basis of the linear dispersion in any physical model of a linear waveguide in one or...
The electromagnetic field is canonically quantized in the presence of a linear, dispersive, and diss...
A technique of canonical quantization in a general dispersive nonlinear dielectric medium is present...
We employ another approach to quantize electromagnetic fields in the coordinate space, instead of th...
International audienceThe quantization of plasmons has been analyzed mostly under the assumption of ...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
OAPA The dissipative quantum electromagnetics is introduced in a comprehensive manner as a field-mat...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
A Hamiltonian framework is developed for a sequence of ultrashort optical pulses propagating in a no...
The canonical method is invoked to quantize dissipative systems using the WKB approximation. The wav...
We present a computational framework for canonical quantization in arbitrary inhomogeneous dielectri...
We present a Hamiltonian for electrodynamics in lossy, dispersive, magneto-electric media, and diago...
We find the action that describes the electromagnetic field in a spatially dispersive, homogeneous m...
The microscopic basis of the linear dispersion in any physical model of a linear waveguide in one or...
The electromagnetic field is canonically quantized in the presence of a linear, dispersive, and diss...
A technique of canonical quantization in a general dispersive nonlinear dielectric medium is present...
We employ another approach to quantize electromagnetic fields in the coordinate space, instead of th...
International audienceThe quantization of plasmons has been analyzed mostly under the assumption of ...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
This thesis presents a Hamiltonian formulation of the electromagnetic fields in structured (inhomoge...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
OAPA The dissipative quantum electromagnetics is introduced in a comprehensive manner as a field-mat...
We present a canonical quantization of macroscopic electrodynamics. The results apply to inhomogeneo...
A Hamiltonian framework is developed for a sequence of ultrashort optical pulses propagating in a no...
The canonical method is invoked to quantize dissipative systems using the WKB approximation. The wav...