We present GPUQT, a quantum transport code fully implemented on graphics processing units. Using this code, one can obtain intrinsic electronic transport properties of large systems described by a real-space tight-binding Hamiltonian together with one or more types of disorder. The DC Kubo conductivity is represented as a time integral of the velocity auto-correlation or a time derivative of the mean square displacement. Linear scaling (with respect to the total number of orbitals in the system) computation time and memory usage are achieved by using various numerical techniques, including sparse matrix–vector multiplication, random phase approximation of trace, Chebyshev expansion of quantum evolution operator, and kernel polynomial method...
Current quantum computers are characterized as having the order of 5-100 qubits, with limited connec...
The Path-Integral Formulation of Quantum Mechanics is intro- duced along with a detailed mathematica...
We present an implementation of phaseless Auxiliary-Field Quantum Monte Carlo (ph-AFQMC) utilizing g...
Here are all the input and output data for the third example (see Sec. 5.3 of this paper) in the fol...
Many-particle continuous-time quantum walks (CTQWs) represent a resource for several tasks in quantu...
The performance potential for simulating quantum electron transport on graphical processing units (G...
Abstract: Modern videogames place increasing demands on the computational and graphical hardware, le...
In recent years, quantum computing has undergone significant developments and has established its su...
Quantum computing proposes quantum algorithms exponentially faster than their clas- sical analogues ...
Any system in the world constitutes particles like electrons. To analyze the behaviors of these syst...
In recent years, predictive computational modeling has become a cornerstone for the study of fundame...
We present the first graphical processing unit (GPU) coprocessor-enabled version of the Order-N Elec...
Quantum computers are thought to be the future of computation, using the properties of quantum mecha...
International audienceKwant is a Python package for numerical quantum transport calculations. It aim...
Electron transfer is a fundamental process that can be studied with the help of computer simulation....
Current quantum computers are characterized as having the order of 5-100 qubits, with limited connec...
The Path-Integral Formulation of Quantum Mechanics is intro- duced along with a detailed mathematica...
We present an implementation of phaseless Auxiliary-Field Quantum Monte Carlo (ph-AFQMC) utilizing g...
Here are all the input and output data for the third example (see Sec. 5.3 of this paper) in the fol...
Many-particle continuous-time quantum walks (CTQWs) represent a resource for several tasks in quantu...
The performance potential for simulating quantum electron transport on graphical processing units (G...
Abstract: Modern videogames place increasing demands on the computational and graphical hardware, le...
In recent years, quantum computing has undergone significant developments and has established its su...
Quantum computing proposes quantum algorithms exponentially faster than their clas- sical analogues ...
Any system in the world constitutes particles like electrons. To analyze the behaviors of these syst...
In recent years, predictive computational modeling has become a cornerstone for the study of fundame...
We present the first graphical processing unit (GPU) coprocessor-enabled version of the Order-N Elec...
Quantum computers are thought to be the future of computation, using the properties of quantum mecha...
International audienceKwant is a Python package for numerical quantum transport calculations. It aim...
Electron transfer is a fundamental process that can be studied with the help of computer simulation....
Current quantum computers are characterized as having the order of 5-100 qubits, with limited connec...
The Path-Integral Formulation of Quantum Mechanics is intro- duced along with a detailed mathematica...
We present an implementation of phaseless Auxiliary-Field Quantum Monte Carlo (ph-AFQMC) utilizing g...