supported by the National Natural Science Foundation of China(no.62122034);National Key Research and Development Program of China(no.2022YFB3606504,and 2022YFB3602903);Guangdong University Key Laboratory for Advanced Quantum Dot Displays and Lighting(no.2017KSYS007);Shenzhen Key Laboratory for Advanced Quantum Dot Displays and Lighting(no.ZDSYS201707281632549);Shenzhen Key Laboratory of Applied Technologies of Super-Diamond and Functional Crystals(no.ZDSYS20230626091303007);Shenzhen Stable Support Research Foundation(no.20220717215521001);Shenzhen Science and Technology Program(no.JCYJ20220818100411025);High Level of Special Funds from Southern University of Science and Technology(no.G030230001 and no.G03034K002).
Colloidal quantum dots(CQDs)are attractive gain media due to their wavelength-tunability and low optical gain threshold.Consequently,CQD lasers,especially the surface-emitting ones,are promising candidates for display...
supported by the National Natural Science Foundation of China (Grant No. 12105025)。
Collective quantum states, such as subradiant and superradiant states, are useful for controlling optical responses in many-body quantum systems. In this work, we study novel collective quantum phenomena in waveguide-...
supported by the U.S.Department of Energy,Office of Science,Office of Basic Energy Sciences,under Contract No.DE-SC0012704;supported by EPSRC.Work at Argonne National Laboratory was supported by the U.S.Department of Energy,Office of Science,Office of Basic Energy Sciences,Materials Science and Engineering Division;X.H.was supported by the Gordon and Betty Moore Foundation’s EPiQS Initiative through Grant No.GBMF9074;S.D.M.and P.G.E.gratefully acknowledge support from the U.S.DOE Office of Science under grant no.DE-FG02-04ER46147;from the US NSF through the University of Wisconsin Materials Research Science and Engineering Center(DMR-2309000 and DMR-1720415).
Domain wall structures form spontaneously due to epitaxial misfit during thin film growth.Imaging the dynamics of domains and domain walls at ultrafast timescales can provide fundamental clues to features that impact ...
Project supported by the IACAS Young Elite Researcher Project(Grant No.QNYC201703);the Rising Star Foundation of Integrated Research Center for Islands and Reefs Sciences,CAS(Grant No.ZDRW-XH-2021-2-04);the Key Laboratory Foundation of Acoustic Science and Technology(Grant No.2021-JCJQ-LB-066-08).
Acoustic scattering modulation caused by an undulating sea surface on the space-time dimension seriously affects underwater detection and target recognition.Herein,underwater acoustic scattering modulation from a movi...