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Q27355596Coupled Spin and Valley Physics in Monolayers of MoS 2 and Other Group-VI DichalcogenidesVan der Waals engineering of ferromagnetic semiconductor heterostructures for spin and valleytronics.Optically controlled locking of the nuclear field via coherent dark-state spectroscopy.Quantum size effects on the work function of metallic thin film nanostructures.Ultrafast hot-carrier-dominated photocurrent in graphene.Quantum-enhanced tunable second-order optical nonlinearity in bilayer graphene.Valley polarization in MoS2 monolayers by optical pumping.Optical signature of symmetry variations and spin-valley coupling in atomically thin tungsten dichalcogenidesOptical generation of excitonic valley coherence in monolayer WSe2.Electrically tunable excitonic light-emitting diodes based on monolayer WSe2 p-n junctions.Observation of long-lived interlayer excitons in monolayer MoSe2-WSe2 heterostructures.Monolayer semiconductor nanocavity lasers with ultralow thresholds.Electrical control of second-harmonic generation in a WSe2 monolayer transistor.Visualizing band offsets and edge states in bilayer-monolayer transition metal dichalcogenides lateral heterojunctionDirectional interlayer spin-valley transfer in two-dimensional heterostructures.Electronic structures and theoretical modelling of two-dimensional group-VIB transition metal dichalcogenides.Fault-tolerant almost exact state transmission.Magnetoelectric effects and valley-controlled spin quantum gates in transition metal dichalcogenide bilayers.Electrical control of neutral and charged excitons in a monolayer semiconductor.Moiré excitons: From programmable quantum emitter arrays to spin-orbit-coupled artificial lattices.Single quantum emitters in monolayer semiconductors.Nonlinear valley and spin currents from Fermi pocket anisotropy in 2D crystals.Optical control of topological quantum transport in semiconductors.Single Defect Light-Emitting Diode in a van der Waals Heterostructure.Valley-polarized exciton dynamics in a 2D semiconductor heterostructure.Population pulsation resonances of excitons in monolayer MoSe2 with sub-1 μeV linewidths.Dirac cones and Dirac saddle points of bright excitons in monolayer transition metal dichalcogenides.Stacking symmetry governed second harmonic generation in graphene trilayers.Quantum computing by optical control of electron spinsGiant tunneling magnetoresistance in spin-filter van der Waals heterostructuresExcitonic luminescence upconversion in a two-dimensional semiconductorSwitchable valley functionalities of an n − n − − n junction in 2D crystalsTopological mosaics in moiré superlattices of van der Waals heterobilayersMany-body effects in nonlinear optical responses of 2D layered semiconductorsSpin-valley qubit in nanostructures of monolayer semiconductors: Optical control and hyperfine interactionFeedback control of nuclear spin bath of a single hole spin in a quantum dotMagnetic control of valley pseudospin in monolayer WSe 2Valley excitons in two-dimensional semiconductorsControl of two-dimensional excitonic light emission via photonic crystal
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Q27355596-A020518D-80C9-46D8-BAA6-FA15259894D6Q27448679-FB5BCD5F-A7D0-41DE-8F12-587385B7FEADQ30854096-783FC278-1B80-4F65-915A-D14A8DF0355CQ30866057-592FF3FD-0CAF-4EB1-91FE-1B26FCB1C3C8Q34059116-90DB3B0F-0B86-472E-82B4-B752CE0F5F97Q34127799-335C58AB-0A63-4713-913A-E957CE0AF998Q34173824-6BC3F1B4-3409-497F-A4BA-2956A0708BA8Q34282219-1BD82BEB-712B-4A4B-936F-7751B944FE09Q34338498-71E81FF5-37B9-463E-B37A-769436670028Q34363204-FA74C3F2-9F4F-4FDF-8D78-6B558212522AQ35114525-DB220454-C3EB-45A4-B3BB-7E518F2AEF0AQ35566504-F117A5A6-EFDB-4B44-A7DC-1D914E1D1769Q35578993-6AD1B2D0-7A2A-4926-8ACE-1C7ED515D811Q35610169-D6497955-C7F8-4AC4-9824-25329738E2BCQ36527860-6DFA9D6E-61A6-4383-A4E3-88E356A85716Q37518909-79BEFF5B-FB65-4CB8-BD32-DE65D8BD28CFQ38283064-7E2EC838-AC3E-4704-905D-5ECA3549C7C0Q41867831-359AC853-6D9C-4D57-9C15-E17B4F585C8EQ43972335-FD54D71F-05FA-4A00-B450-0BABBBBAB0CDQ44873983-7DECB96F-0C80-4C74-BA8F-B5A7932EB7D0Q47100448-69D53475-59A4-4719-A110-BA639D8B5BDDQ48192344-78928CA5-0A33-4CCC-A433-8DAE322EC79CQ48720494-DACA8584-DCBC-486B-A082-CAA4715D8849Q50684077-71A57472-711C-41DC-AB18-032BE186E008Q51321354-EB29E6B4-8860-4F87-84ED-8DEDE0910598Q51496032-A8CDDCE5-D6FF-45EF-A811-AAFDE9BAEDDAQ53260502-579A20A6-F3BC-4566-A988-A6298CBF0E59Q53552807-5C4672A2-75A4-4B5B-834C-F1EF5B674982Q55176044-1736CE9C-93A5-40E0-95AE-C1CFB7128536Q58305125-20B881BF-F30C-42B5-8451-6D32C3E60F7EQ58337192-59F1A26C-F9F8-4E63-A7CD-46220490E24FQ58337247-20831358-672D-4C9E-98C6-833FDFB63B3FQ59484194-E042EF51-BED0-4E14-8103-9FC9E89DC43EQ59484197-1AABD44C-258F-492B-A936-A65C4A37675EQ59484198-9052D28F-B18C-47D0-AE22-D9A716D1B2CDQ59484199-AC61C229-BC45-4120-9E83-568E05FEA60AQ59484202-F3FC5412-EAC0-4EAA-B14A-1FE60D6A47A2Q59484204-62F27328-024C-4F70-B2FE-DC2293498C10Q59484206-6C3EA1DF-490B-4E24-AFD6-F8EBEA164B45Q59484208-C61018F4-90BF-4E78-B7F4-3905EA04144A
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description
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Wang Yao
@ast
Wang Yao
@en
Wang Yao
@es
Wang Yao
@sl
type
label
Wang Yao
@ast
Wang Yao
@en
Wang Yao
@es
Wang Yao
@sl
prefLabel
Wang Yao
@ast
Wang Yao
@en
Wang Yao
@es
Wang Yao
@sl
P108
P1053
C-1353-2008
P106
P1153
35141935300
P31
P3829
P496
0000-0003-2883-4528