Project supported by the National Key Research and Development Program of China(Grant No.2021YFA1402103);the National Natural Science Foundation of China(Grant No.12393825)。
Two-photon dissociation of BeH^(+)ions is studied by detecting the fluorescence changes of Be^(+)-BeH^(+)bi-component Coulomb crystal in a linear Paul trap.BeH^(+)ions generated by an exothermic reaction between elect...
We regret that our article“Acceptor planarized type I photosensitizer for lipid droplet-targeted two-photon photodynamic therapy by ferroptosis”(Sci.China Chem.,2024,67:2392-2402)contained errors.However,the correct...
Foundation of National Center for Translational Medicine(Shanghai)SHU Branch(SUITM-2023010);National Natural Science Foundation of China(62005153)。
The demand for real-time feedback and miniaturization of sensing elements is a crucial issue in the treating vascular diseases with minimally invasive interventions.Here,Fabry–Perot microcavities fabricated via direc...
supported by the Tianjin Natural Science Foundation under Grant No.23JCQNJC00560;the Natural Science Funds of Tianjin Normal University under Grant No.YJRC202421;the National Natural Science Foundation of China under Grants Nos.12004281 and 62371038;the Scientific Research the Natural Science Basic Research Program of Shaanxi under Grant No.2023-JC-QN-0092;the Program Funded by Education Department of Shaanxi Provincial Government under Grant No.23JK0705。
Photonic hyper-parallel quantum gates play a critical role in high-capacity quantum communication and fast quantum computing.Here,based on photon scattering in onedimensional(1D)waveguides,we present some heralded sch...
supported by the National Key Research and Development Program of China(Nos.2021YFB2802000 and 2022YFB2804301);the Science and Technology Commission of Shanghai Municipality(No.21DZ1100500);the Shanghai Municipal Science and Technology Major Project,the Shanghai Frontiers Science Center Program(2021–2025 No.20);the National Natural Science Foundation of China(Nos.61975123,62305219,and 62205208);the Shanghai Natural Science Foundation(No.23ZR1443200);the China Postdoctoral Science Foundation(Nos.2022M712138 and 2021M702192);the Shanghai Super Postdoctoral Incentive Scheme(Nos.5B22904002 and 5B22904006)。
Free-space diffractive neural networks(DNNs)have been an intense research topic in machine learning for image recognition and encryption due to their high speed,lower power consumption,and high neuron density.Recent a...
Supported in part by the German Research Foundation DFG through Research Unit FOR 2926"Next Generation Perturbative QCD for Hadron Structure:Preparing for the Electron-Ion Collider"(409651613);National Natural Science Foundation of China(12061131006);National Natural Science Foundation of China(U1832160,12075177)。
Within the framework of nonrelativistic-QCD factorization,we calculate both the next-to-leading-order relativistic and QCD corrections to prompt J/ψpair production,with feed-down fromψ(2S)mesons,via photon-photon co...
Formamidinium lead bromide(FAPbBr_(3))nanocrystals(NCs)have been considered to be a good optoelectronic material due to their pure green emission,excellent stability and superior carrier transport characteristics.Howe...
supported by the National Natural Science Foundation of China(12074020).
Phase control of random lasing processes has been a challenge both in physics and in the device/materials design.Although conventional saturable absorbers can be integrated with random lasers to conceive mode-locking ...
supported by National Key Research and Development Program of China(No.2022YFA1207600);National Natural Science Foundation of China(Nos.22178395,62175262 and 62005294)。
To overcome the conflict between the long-wavelength excitation and high singlet oxygen quantum yield of photosensitizers,we conjugated a two-photon fluorophore,tetrahydroquinoxaline coumarin(TQ),and an efficient phot...
supported by the National Natural Science Foundation of China(Nos.22205237,22271283,21971240,and 21827813);the National Key Research and Development Program of China(No.2017YFA0206802);the Scientific Instrument Developing Project of the Chinese Academy of Sciences(No.YJKYYQ20210039).
Fluorescence imaging can be employed in fields of medical treatment,astronomical exploration,and national defense security.Traditional fluorescence imaging often takes the single-photon techniques,which is vulnerable ...