Impact of Parallel Computing on Study of Time Evolution of a Quantum Impurity System in Response to a Quench

In an arbitrary system subjected to a quench or an external field that varies the system parameters, the degrees of freedom increases double in comparison to that of an isolated system. In this study, we consider the quantum impurity system subjected to a quench, and measure the corresponding time-e...

全面介紹

Saved in:
書目詳細資料
Main Authors: Nghiem, Thi Minh Hoa, Dang, The Hung, Luong, Minh Tuan, Duong, Xuan Nui, Nguyen, Duc Trung Kien
格式: Article
語言:English
出版: H. : ĐHQGHN 2020
主題:
在線閱讀:http://repository.vnu.edu.vn/handle/VNU_123/78010
https//doi.org/ 10.25073/2588-1124/vnumap.4453
標簽: 添加標簽
沒有標簽, 成為第一個標記此記錄!
機構: Vietnam National University, Hanoi
語言: English
實物特徵
總結:In an arbitrary system subjected to a quench or an external field that varies the system parameters, the degrees of freedom increases double in comparison to that of an isolated system. In this study, we consider the quantum impurity system subjected to a quench, and measure the corresponding time-evolution of the spectral function, which is originated from the time-resolved photoemission spectroscopy. Due to the large number of degrees of freedom, the expression of the time-dependent spectral function is twice much more complicated than that of the time-independent spectral function, and therefore the calculation is extremely time consuming. In this paper, we estimate the scale of time consumption of such calculation in comparison to that of time-independent calculation, and present our solution to the problem by using parallel computing as implementing both MPI and OpenMP to the calculation. We also discuss the possibility to exploit parallel computing with GPU in the near future, and the preliminary results of time-dependent spectral function.