With the fierce competition among major telecom operators for existing users, machine learning has made remarkable progress in customer churn prediction. However, most existing work and experiments rely on the data of...
Sichuan Science and Technology Program(2022YFSY0061,2022YFSY0062,2022YFSY0063,2023YFSY0058,2023NSFSC0048);Innovation Program for Quantum Science and Technology(2021ZD0301702);National Natural Science Foundation of China(12174222,62475039,62405046);Natural Science Foundation of Shandong Province(ZR2021ZD02);National Key Research and Development Program of China(2018YFA0306102,2022YFA1405900).
The light–matter interface is an important building block for long-distance quantum networks.Towards a scalable quantum network with high-rate quantum information processing,it requires to develop integrated light–m...
supported by the Key Research and Development Program(2022YFA1404800);the National Natural Science Foundation of China(62375226,62375225,12374359,62105267);the Fundamental Research Funds for the Central Universities(23GH02023);the Analytical&Testing Center of Northwestern Polytechnical University and the Australian Research Council.The Australian National Fabrication Facility ACT Node is acknowledged for access to the epitaxial growth facilities.
Highly integrated optoelectronic and photonic systems underpin the development of next-generation advanced optical and quantum communication technologies,which require compact,multiwavelength laser sources at the tele...
supported by the Institute for Basic Science of Korea(IBS-R011-D1);the National Research Foundation of Korea(NRF)Grants(RS-2023-00246477);Korea Institute of Science and Technology(KIST)Institutional Program(2E32570 and 2E32571).
Transition metal dichalcogenide(TMD)layered semiconductors possess immense potential in the design of photonic,electronic,optoelectronic,and sensor devices.However,the sub-bandgap light absorption of TMD in the range ...