Vector and scalar potential formulation is valid from quantum theory to classical electro-magnetics. The rapid development in quantum optics calls for electromagnetic solutions that straddle quantum physics as well as classical physics. The vector potential formulation is a good candidate to bridge these two regimes. Hence, there is a need to generalize this formu-lation to inhomogeneous media. A generalized gauge is suggested for solving electromagnetic problems in inhomogenous media which can be extended to the anistropic case. The advantages of the resulting equations are their absence of low-frequency catastrophe. Hence, usual differ-ential equation solvers can be used to solve them over multi-scale and broad bandwidth. It is shown that...
Presented is a variational formulation with specific functionals for general electromagnetic problem...
Potential representations for electromagnetic fields are considered for linear bi-anisotropic media....
A recent suggestion that vector potentials in electrodynamics (ED) are nontensorial objects under fo...
Potential-based formulation with generalized Lorenz gauge can be used in the quantization of electro...
Some of the basic developments in the theory of electromagnetic field representation in terms of Her...
In this work, numerical solution to a general electromagnetic (EM) system is studied using a formali...
In this work we calculate the closed time path generating functional for the electromagnetic (EM) fi...
http://deepblue.lib.umich.edu/bitstream/2027.42/21320/2/rl2195.0001.001.pdfhttp://deepblue.lib.umich...
Electromagnetic field theory plays a very important role in present-day technology; examples of tech...
In this paper a new solving method is presented, using the Method of Inhomogeneous Basic Modes (MIBM...
A general technique for solving Maxwell's equations exactly, based on expansion of the solution in a...
Development of quantum engineering put forward new theoretical problems. Behavior of a single mesosc...
It is known that with restrictions on the type of the constitutive equations, Maxwell’s equations in...
Analysis of electromagnetic fields in inhomogeneous media is of practical interest in general scatte...
A theory of electromagnetic wave propagation in a weakly anisotropic smoothly inhomogeneous medium i...
Presented is a variational formulation with specific functionals for general electromagnetic problem...
Potential representations for electromagnetic fields are considered for linear bi-anisotropic media....
A recent suggestion that vector potentials in electrodynamics (ED) are nontensorial objects under fo...
Potential-based formulation with generalized Lorenz gauge can be used in the quantization of electro...
Some of the basic developments in the theory of electromagnetic field representation in terms of Her...
In this work, numerical solution to a general electromagnetic (EM) system is studied using a formali...
In this work we calculate the closed time path generating functional for the electromagnetic (EM) fi...
http://deepblue.lib.umich.edu/bitstream/2027.42/21320/2/rl2195.0001.001.pdfhttp://deepblue.lib.umich...
Electromagnetic field theory plays a very important role in present-day technology; examples of tech...
In this paper a new solving method is presented, using the Method of Inhomogeneous Basic Modes (MIBM...
A general technique for solving Maxwell's equations exactly, based on expansion of the solution in a...
Development of quantum engineering put forward new theoretical problems. Behavior of a single mesosc...
It is known that with restrictions on the type of the constitutive equations, Maxwell’s equations in...
Analysis of electromagnetic fields in inhomogeneous media is of practical interest in general scatte...
A theory of electromagnetic wave propagation in a weakly anisotropic smoothly inhomogeneous medium i...
Presented is a variational formulation with specific functionals for general electromagnetic problem...
Potential representations for electromagnetic fields are considered for linear bi-anisotropic media....
A recent suggestion that vector potentials in electrodynamics (ED) are nontensorial objects under fo...