supports from the National Natural Science Foundation of China (Grant Nos.52004143 and 52374095);the open fund for the Laboratory of Mining Response and Disaster Prevention and Control in Deep Coal Mines (Grant No.SKLMRDPC21KF06).
A series of true triaxial unloading tests are conducted on sandstone specimens with a single structural plane to investigate their mechanical behaviors and failure characteristics under different in situ stress states...
funded by the Ministry of Education of the Russian Federation within the framework of a state assignment,number 1023032300071-6-2.3.1.
Time-averaged thermal convection in a rotating horizontal annulus with a higher temperature at its inner boundary is studied.The centrifugal force plays a stabilizing role,while thermal convection is determined by the...
supported by the Ignite National Technology fund,under National Grassroots Initiatives Program of ICT R&D(NIGRI),Project ID.NGIRI-2024-23901 of 2024.
This research focuses on developing innovative hybrid solar dryers that combine solar Photovoltaic(PV)and solar thermal systems for sustainable food preservation in Pakistan,addressing the country’s pressing issues o...
funded by the Ministry of Education of the Russian Federation within the framework of a state assignment,number 1023032300071-6-2.3.1.
Thermal vibrational convection(TVC)refers to the time-averaged convection of a non-isothermal fluid subjected to oscillating force fields.It serves as an effective mechanism for heat transfer control,particularly unde...
Supported by the Natural Science Foundation of Shaanxi Province,China(2022JQ-037);,the National Natural Science Foundation of China(11305119);the Natural Science Basic Research Plan of Shaanxi Province,China(23JSQ001,2020JM-198);the Fundamental Research Funds for the Central Universities(JB170502);the 111 Project(B17035)。
We examine the gauge invariance of massive vector Kaluza-Klein(KK)modes within various 6D brane models.Our analysis reveals that additional constraints on the brane geometry are essential to maintain the gauge invaria...
The Second Tibetan Plateau Scientific Expedition and Research Program,No.2019QZKK0903-02;National Key R&D Program of China,No.2022YFC3002902;National Natural Science Foundation of China,No.42201086。
The Hengduan Mountains region(HMR)is one of the most densely distributed and severe flash flood disaster-prone areas in southwest China.It is also a key area for major engineering projects and beautiful countryside co...
supported by King Abdullah University of Science and Technology(KAUST)Artificial Intelligence Initiative Fund,KAUST Baseline Research Fund No.BAS/1/1626-01-01;KAUST Office of the Sponsored Research under grant nos.OSR-2020-CRG9-4374 and OSR-2022-CRG11-5055.
We propose and demonstrate a data-driven plasmonic metascreen that efficiently absorbs incident light over a wide spectral range in an ultra-thin silicon flm.By embedding a double-nanoring silver array within a 20 nm ...
the National Natural Science Foundation of China(62271322);the Guangdong Basic and Applied Basic Research Foundation(2022A1515011003 and 2023A1515030152);the Shenzhen Science and Technology Program(JCYJ20210324095610027 and JCYJ20210324095611030).
Optical orbital angular momentum(OAM)mode multiplexing has emerged as a promising technique for boosting communication capacity.However,most existing studies have concentrated on channel(de)-multiplexing,overlooking t...
Project supported by the National Key Research and Development Program of China(Grant No.2023YFA1407000);the Strategic Priority Research Program of Chinese Academy of Sciences(Grant No.XDB0460000);the National Natural Science Foundation of China(Grant Nos.12322401,12127807,and 12393832);CAS Key Research Program of Frontier Sciences(Grant No.ZDBS-LY-SLH004);Beijing Nova Program(Grant No.20230484301);Youth Innovation Promotion Association,Chinese Academy of Sciences(Grant No.2023125);CAS Project for Young Scientists in Basic Research(Grant No.YSBR-026)。
Edge structures are ubiquitous in the processing and fabrication of various optoelectronic devices.Novel physical properties and enhanced light–matter interactions are anticipated to occur at crystal edges due to the...