To solve the Dirac equation with the finite difference method, one has to face up to the spurious-state problem due to the fermion doubling problem when using the conventional central difference formula to calculate the first-order derivative on the equal interval lattices. This problem is resolved by replacing the central difference formula with the asymmetric difference formula, i.e., the backward or forward difference formula. To guarantee the hermitian of the Hamiltonian matrix, the backward and forward difference formula should be used alternatively according to the parity of the wavefunction. This provides a simple and efficient numerical prescription to solve various relativistic problems in the microscopic world.Comment: 11 pages, 2...
This thesis presents the results of an exercise in practical numerical analysis whose aim is the est...
Final published versionAlso available from Nature via the DOI in this recordThe correction to this a...
In the present work, the results obtained in [25] about the revivals of a relativistic fermion wave ...
The problem arising due to the use of finite basis set expansion method for the solution of the Dira...
We present a new approach to study (1+1)-dimensional Dirac equation in the background of an effectiv...
The Szymanzik improvement program for gauge theories is most commonly implemented using forward fini...
The Dirac equation is critical to understanding the universe, and plays an important role in technol...
A relativistic equation is proposed for the bound state of two particles, which is in accord with th...
We present four frequently used finite difference methods and establish the error bounds for the dis...
The spectrum of bound and scattering states of the one dimensional Dirac Hamiltonian describing ferm...
Abstract It is possible to reconstruct a ‘defragmented ’ Dirac equation in such a way as to generate...
AUgust 9th, 2004 Second version Nov. 18th, 2004We solve a long standing problem with relativistic ca...
Variational solutions to the Dirac equation in a discrete L2 basis set are investigated. Numerical c...
A finite difference scheme is presented for the Dirac equation in (1+1)D. It can handle space- and t...
It is shown that the squared operation of the Dirac equation which is widely applied may create new ...
This thesis presents the results of an exercise in practical numerical analysis whose aim is the est...
Final published versionAlso available from Nature via the DOI in this recordThe correction to this a...
In the present work, the results obtained in [25] about the revivals of a relativistic fermion wave ...
The problem arising due to the use of finite basis set expansion method for the solution of the Dira...
We present a new approach to study (1+1)-dimensional Dirac equation in the background of an effectiv...
The Szymanzik improvement program for gauge theories is most commonly implemented using forward fini...
The Dirac equation is critical to understanding the universe, and plays an important role in technol...
A relativistic equation is proposed for the bound state of two particles, which is in accord with th...
We present four frequently used finite difference methods and establish the error bounds for the dis...
The spectrum of bound and scattering states of the one dimensional Dirac Hamiltonian describing ferm...
Abstract It is possible to reconstruct a ‘defragmented ’ Dirac equation in such a way as to generate...
AUgust 9th, 2004 Second version Nov. 18th, 2004We solve a long standing problem with relativistic ca...
Variational solutions to the Dirac equation in a discrete L2 basis set are investigated. Numerical c...
A finite difference scheme is presented for the Dirac equation in (1+1)D. It can handle space- and t...
It is shown that the squared operation of the Dirac equation which is widely applied may create new ...
This thesis presents the results of an exercise in practical numerical analysis whose aim is the est...
Final published versionAlso available from Nature via the DOI in this recordThe correction to this a...
In the present work, the results obtained in [25] about the revivals of a relativistic fermion wave ...