supported by the Federal Program'Priority 2030'and NSFC(Project 62350610272);A.K.Samusev acknowledges Deutsche Forschungsgemeinschaft-project No.529710370。
Deeply subwavelength lasers(or nanolasers)are highly demanded for compact on-chip bioimaging and sensing at the nanoscale.One of the main obstacles for the development of single-particle nanolasers with all three dime...
National Key Research and Development Program of China (2017YFA0207700);Outstanding Youth Fund of Zhejiang Natural Science Foundation(LR18F050001);National Natural Science Foundation of China (61804134, 61874096, 62074136)。
Exciton-polaritons offer the potential to achieve electrically pumped perovskite polariton lasers with much lower current thresholds than conventional photonic lasers. While optically pumped exciton-polaritons have be...
supported by the Natural Science Foundation of Zhejiang Province of China(Grant No.LZ22A050002);the National Natural Science Foundation of China(Grant Nos.11835011 and 12074343)。
We propose a scheme to generate and control supersonic shock waves in a non-resonantly incoherent pumped exciton-polariton condensate,and different types of shock waves can be generated.Under conditions of different i...
Project supported by the Natural Science Foundation of Zhejiang Province of China(Grant No.LZ22A050002);the National Natural Science Foundation of China(Grant Nos.11835011&12074343)
In one-dimensional incoherent pumped exciton-polariton condensates,we realize the generation and control of supersonic shock waves.By choosing a suitable initial input wave,we obtain the region of existence of various...
The scope of the study is the spectra of low-temperature (T = 2K) photoluminescence of a p-CdTe/n-CdS film heterostructure comprising a monolayer of CdTe microcrystals, where a single microcrystalline particle is typi...
supported by the National Key R&D Program of China(Grant No.2018YFA036900);the Beijing Natural Science Foundation(Grant No.JQ21018)。
Moirématerials,composed of two single-layer two-dimensional semiconductors,are important because they are good platforms for studying strongly correlated physics.Among them,moirématerials based on transition metal d...
Q.X.gratefully acknowledges the funding support from the National Natural Science Foundation of China(12020101003);the Tsinghua University start-up grant;T.C.H.L.acknowledges the support from the Singapore Ministry of Education via the Ac RF Tier 3 Programme‘Geometrical Quantum Materials’(MOE2018-T3-1-002);Ac RF Tier 2 projects(MOE2018-T2-02-068 and MOE2019-T2-1-004);J.W.acknowledges the support from the Shanghai Science and Technology Committee Rising-Star Cultivation Program(22YF1402600);the Young Scientist Project of the China Ministry of Education innovation platform。
Quantized vortices appearing in topological excitations of quantum phase transition play a pivotal role in strongly correlated physics involving the underlying confluence of superfluids,Bose-Einstein condensates and s...
the National Natural Science Foundation of China(Grant Nos.11974071,61575040 and 61811530062);in part by Sichuan Science and Technology Program(Grant No.2018HH0148).
The recent era of fast optical manipulation and optical devices owe a lot to exciton-polaritons being lighter in mass,faster in speed and stronger in nonlinearity due to hybrid light-matter characteristics.The room te...
support of the Fundamental Research Funds for the Central Universities of China,the National Natural Science Foundation of China(No.61904151);the Natural Science Foundation of Shaanxi(No.2020JM-108);the Joint Research Funds of the Department of Science&Technology of Shaanxi Province and Northwestern Polytechnical University(No.2020GXLH-Z-020);T.Y thanks the support of the Singapore National Research Foundation(NRF)under the Competitive Research Programs(No.NRF-CRP-21-2018-0007);X.W.Z.thanks the support of National Natural Science Foundation of China(No.12174422).
Light-matter interactions in two-dimensional transition metal dichalcogenides(TMDs)are sensitive to the surrounding dielectric environment.Depending on the interacting strength,weak and strong exciton–photon coupling...
Thanks to the large binding energy and excellent optical properties of Frenkel excitons,organic semiconductors emerge as ideal platforms for the realization of room-temperature exciton polariton(EP)Bose-Einstein conde...