The authors express their gratitude to various organizations for their support in this research,including the National Natural Science Foundation of China(Grant No.61775241);the Hunan province key research and development project(Grant No.2019GK2233);the Hunan Provincial Science Fund for Distinguished Young Scholars(Grant No.2020JJ2059);the Youth Innovation Team(Grant No.2019012)of CSU.Additionally,they acknowledge the Science and Technology Innovation Basic Research Project of Shenzhen(Grant No.JCYJ20190806144418859);the National Natural Science Foundation of China(Nos.62090035 and U19A2090);the Key Program of Science and Technology Department of Hunan Province(2019XK2001,2020XK2001);The authors also thank the High-Performance Complex Manufacturing Key State Lab Project of Central South University(Grant No.ZZYJKT2020-12)for their support.Z.W.L;acknowledges the support from the Australian Research Council(ARC Discovery Project,DP180102976);C.T.W.is grateful for the support from the National Natural Science Foundation of China(Grant No.11974387);the Strategic Priority Research Program of the Chinese Academy of Sciences(Grant No.XDB33000000);H.H.Z.acknowledges the support from the Postdoctoral Science Foundation of China(2022M713546).Finally,the authors recognize the Beijing Super Cloud Computing Center(BSCC)for providing HPC resources,which have greatly contributed to the results reported in this paper.
The stacking of twisted two-dimensional(2D)layered materials has led to the creation of moirésuperlattices,which have become a new platform for the study of quantum optics.The strong coupling of moirésuperlattices c...
We acknowledge financial support from the Institute for Basic Science(IBS)in the Republic of Korea through the project IBS-RO24-D1;This work is also supported by Korea Institute for Advanced Study(KIAS).
The moiré superlattice of misaligned atomic bilayers paves the way for designing a new class of materials with wide tunability.In this work,we propose a photonic analog of the moiré superlattice based on dielectric ...
support from the Naional Natural Science Foundation of China(Grant No.61775241);Hunan province key research and development project(Grant No.2019GK2233);Hunan Provincial Science Fund for Distinguished Young Scholars(Grant No.2020JJ2059);the Youth Innovaticn Team(Grant No.2019012)of CSU,the Science and Technolgy Innovaton Basic Research Project of Shenzhen(Grant No.JCY120190806144418859);the National Natural Science Foundation of China (Nos.62090035,U19A2090);the Key Program of Science and Technology Department of Hunan Province(2019XK2001,2020XK2001);support of the High-Performance Complex Manufacturing Key State Lab Project,Central South University(Grant No.ZZYJKT2020-12);ZWL.thanks the support from the Australian Research Council(ARC Discovery Project,DP180102976).
Recent advances in twisted van der Waals heterostructure superlattices have emerged as a powerful and attractive platform for exploring novel condensed matter physics due to the interplay between the moirépotential a...
the support of the Quantum Technology for Engineering(QTE)programme of A*STAR and of the NRF CRP grant NRF—CRP14-2014-04.
Nonlinear interferometers with correlated photons hold promise to advance optical characterization and metrology techniques by improving their performance and affordability.These interferometers offer subshot noise ph...