Project supported by the National Natural Science Foundation of China(Grant No.62275075);the Science and Technology Research Program of the Education Department of Hubei Province,China(Grant No.B2022188);the Natural Science Foundation of Hubei Province,China(Grant No.2023AFC042);the Training Program of Innovation and Entrepreneurship for Undergraduates of Hubei Province,China(Grant No.S202210927003);the Medical Project of Hubei University of Science and Technology(Grant No.2023YKY08)。
We propose an approach for generating robust two-dimensional(2D)vortex clusters(VCs)in a Rydberg atomic system by utilizing parity-time(PT)symmetric optical Bessel potential.We show that the system supports novel mult...
supported by the National Natural Science Foundation of China(Grant Nos.92165107,and 12074391);the Fundamental Research Program of the Chinese Academy of Sciences;the Science and Technology Commission of Shanghai Municipality。
Connectivity of two-qubit logic gates plays a crucial and indispensable role in quantum computation research.For the cold atom qubit platform,while the two-qubit Rydberg blockade gate has recently made rapid experimen...
National Key Research and Development Program of China(2019YFA0307700);National Natural Science Foundation of China(12174148,12074144,12074239);Li Ka Shing Foundation STU-GTIIT Joint Research(2024LKSFG02);STU Scientific Research Initiation(NTF23036T).
Conservation of parity plays a fundamental role in our understanding of various quantum processes.However,it is difficult to observe in atomic and molecular processes induced by a strong laser field due to their multi...
Project supported by the National Natural Science Foundation of China(Grant Nos.U2341211,62175136,12241408,and 12120101004);the Innovation Program for Quantum Science and Technology(Grant No.2023ZD0300902);the Fundamental Research Program of Shanxi Province(Grant No.202303021224007);the 1331 Project of Shanxi Province.
We present the electromagnetically induced transparency(EIT)spectra of cold Rydberg four-level cascade atoms consisting of the 6S_(1/2)→6P_(3/2)→7S_(1/2)→60P_(3/2) scheme.A coupling laser drives the Rydberg transit...
supported by the National Natural Science Foundation of China(Grant Nos.62275075 and 11975172);the Sci-ence and Technology Research Program of Education De-partment of Hubei Province(Grant No.B2022188);the Natural Science Foundation of Hubei Province(Grant No.2023AFC042);the Training Program of Innova-tion and Entrepreneurship for Undergraduates of Hubei Province(Grant No.S202210927003).
We present a novel approach for generating stable three-dimensional(3D)spatiotemporal solitons(SSs)within a rotating Bose–Einstein condensate,incorporating spin–orbit coupling(SOC),a weakly anharmonic potential and ...
supported by the National Key R&D Program of China(No.2022YFA1404002);the National Natural Science Foundation of China(Nos.U20A20218,61525504,and 61435011);the Anhui Initiative in Quantum Information Technologies(No.AHY020200);the Major Science and Technology Projects in Anhui Province(No.202203a13010001).
Studying Rydberg microwave frequency comb(MFC)spectroscopy helps increase the working bandwidth of the Rydberg receiver.This Letter demonstrates off-resonant Rydberg MFC spectroscopy in a meta-waveguide-coupled Rydber...
supported by the National Key Research and Development Program of China(Grant No.2021YFA1402004);the Key-Area Research and Development Program of Guangdong Province,China(Grant Nos.2019B030330001 and 2020B0301030008);the National Natural Science Foundation of China(Grant Nos.12225405,12204182,and U20A2074);the Innovation Program for Quantum Science and Technology(Grant No.2021ZD0301705);the Natural Science Foundation of Guangdong Province,China(Grant No.2022A1515012026).
Terahertz heterodyne receivers with high sensitivity and spectral resolution are crucial for various applications.Here,we present a room-temperature atomic terahertz heterodyne receiver that achieves ultrahigh sensiti...
National Natural Science Foundation of China(62075179);Shaanxi Fundamental Science Research Project for Mathematics and Physics (23JSZ005);Natural Science Foundation of Shaanxi Provincial Department of Education(22JS026, 22JS027)。
In recent years,terahertz (THz) technology has made significant progress in numerous applications;however,the highly sensitive,room-temperature THz detectors are still rare,which is one of the bottlenecks in THz resea...
supported by the National Key R&D Program of China(2022YFA1404002);the National Natural Science Foundation of China(Grant Nos.U20A20218,61525504,61722510,61435011);the Major Science and Technology Projects in Anhui Province(Grant No.202203a13010001);the National Natural Science Foundation of China(Grant No.11934013).
Detecting microwave signals over a wide frequency range is endowed with numerous advantages as it enables simultaneous transmission of a large amount of information and access to more spectrum resources.This capabilit...