supported by the National Natural Science Foundation of China(12122405,12274169,52072188 and 11904067);National Key R&D Program of China(2018YFA0305900 and 2022YFA1402304);Program for Changjiang Scholars and Innovative Research Team in University(IRT_15R23);and Jilin Provincial Science and Technology Development Project(20210509038RQ).
The discovery of covalent H_(3)S and clathrate structure LaH_(10) with excellent superconducting critical temperatures at high pressures has facilitated a multitude of research on compressed hydrides.However,their sup...
supported by the U.S.Department of Energy,Office of Science,Office of Advanced Scientific Computing Research,and Office of Basic Energy Sciences,Scientific Discovery through Advanced Computing(SciDAC)program under Award No.DESC0022088;supported by the U.S.Department of Energy,Office of Science,Office of Basic Energy Sciences,and Fuels from Sunlight Hub under Award DE-SC0021266.
Nonequilibrium dynamics governed by electron–phonon(e-ph)interactions plays a key role in electronic devices and spectroscopies and is central to understanding electronic excitations in materials.The real-time Boltzm...
Electron-phonon coupling is the fundamental physical mechanism for many intriguing cases,such as Jahn-Teller distortion[1],superconductor[2],charge density wave[3],thermoelectric[4],and so on.When electron-phonon coup...
supported by the starting fund of Peking University Shenzhen Graduate School;Fujian Science&Technology Innovation Laboratory for Energy Devices of China (Grant No. 1C-LAB);the Chemistry and Chemical Engineering Guangdong Laboratory (Grant No. 1922018);the Soft Science Research Project of Guangdong Province (Grant No. 2017B030301013);the Major Science and Technology Infrastructure Project of Material Genome Big-Science Facilities Platform supported by Municipal Development and Reform Commission of Shenzhen。
Electron-phonon coupling(EPC) in bulk materials is an important effect in multifarious physical and chemical phenomena. It is the key to explaining the mechanisms for superconductivity, electronic transport, etc. The ...
This project was funded by the EU-H2020 through H2020-NMBP-TO-IND project GA n.814487 (INTERSECT);ICN2 is supported by the Severo Ochoa program from Spanish MINECO (Grant No.SEV-2017-0706) and the CERCA Program of Generalitat de Catalunya;Work at Boston College (contributions to code testing and ab initio thermoelectric transport calculations for silicon) was supported by the US Department of Energy (DOE),Office of Science,Basic Energy Sciences under award # DE-SC0021071;NHP acknowledges helpful discussions with Vladimir Dikan,José María Escartín,Xavier Cartoixà,and Riccardo Rurali.We thankfully acknowledge the computer resources at MareNostrum and La Palma and the technical support provided by Barcelona Supercomputing Center (FI-2021-1-0016);the Center for Astrophysics in La Palma (QS-2021-1-0022),respectively;We also acknowledge computational support from the Boston College Linux clusters and those at ICN2 provided by Grant PGC2018-096955-B-C43 funded by MCIN/AEI/10.13039/501100011033 and “ERDF A way of making Europe”.
elphbolt is a modern Fortran (2018 standard) code for efficiently solving the coupled electron–phonon Boltzmann transport equations from first principles.Using results from density functional and density functional p...
supported by the National Key Research and Development Program of China(Grant No. 2016YFA0301700);the National Natural Science Foundation of China(Grant Nos.11625419,61674132, 11674300,11575172,and 91421303);the Strategic Priority Research Program of the Chinese Academy of Sciences(Grant No.XDB01030000);the Fundamental Research Fund for the Central Universities
Micro/nanoelectromechanical systems(MEMS/NEMS)have potential applications in sensing,cooling,and mechanical signal processing.Thanks to the development of modern MEMS fabrication techniques,in analogy to photons,phono...
Project supported by the Iranian Nanotechnology Initiative;supported by Shahrekord University through a research fund
We study the effect of electron-phonon (e-ph) interaction on the elastic and inelastic electronic transport of a nanowire connected to two simple rigid leads within the tight-binding and harmonic approximations. The...
Project supported by the National Natural Science Foundation of China(Grant No.61275059)
Electronic transport through a vibrating double quantum dot (DQD) in contact with noncollinear ferromagnetic (FM) leads is investigated. The state transition between the two dots of the DQD is excited by an AC mic...
A theory of triple magnetopolarons in an isolated quantum well in a strong magnetic field was developed. We study the behavior of the magnetooptical absorption peaks corresponding to the transitions of an electron at ...