Science and Technology Commission of Shanghai Municipality(20ZR1406000);National Key Research and Development Program of China(2021YFA1400202,2021YFA1400503);National Natural Science Foundation of China(11874123,12125403,12221004)。
Measuring magnetic response from spin and current is of fundamental interest in condensed matter physics.Negatively charged nitrogen-vacancy(NV^(-))centers in diamond are emerging as a robust and versatile quantum sen...
National Science Foundation(CMMI-1826078);GrantováAgentura?eskéRepubliky(GA20-28980S);Cancer Prevention and Research Institute of Texas(RP180588);NSF Graduate Research Fellowship(279451);National Institutes of Health(1R01GM127696,1R21CA269099,1R21GM142107);Army Medical Research(W81XWH2010777);Air Force Office of Scientific Research(17RHCOR483,20RHCOR051,FA9550-15-1-0517,FA9550-20-1-0366,FA9550-20-1-0367);U.S.Air Force(FA8650-19-C-6024)。
Nitrogen vacancy diamonds have emerged as sensitive solid-state magnetic field sensors capable of producing diffraction limited and sub-diffraction field images.Here,for the first time,to our knowledge,we extend those...
Defense Advanced Research Projects Agency(Qu ASAR Program);Australian Research Council(DP140100734,FT140100650);Defence Science and Technology Group(CERA49,CERA50);University of Queensland(2014001447)。
Magnetostrictive optomechanical cavities provide a new optical readout approach to room-temperature magnetometry.Here we report ultrasensitive and ultrahigh bandwidth cavity optomechanical magnetometers constructed by...