Suivre
Andrew Y. Joe
Andrew Y. Joe
Adresse e-mail validée de ucr.edu - Page d'accueil
Titre
Citée par
Citée par
Année
Electrical control of interlayer exciton dynamics in atomically thin heterostructures
LA Jauregui, AY Joe, K Pistunova, DS Wild, AA High, Y Zhou, G Scuri, ...
Science 366 (6467), 870-875, 2019
4162019
Probing dark excitons in atomically thin semiconductors via near-field coupling to surface plasmon polaritons
Y Zhou, G Scuri, DS Wild, AA High, A Dibos, LA Jauregui, C Shu, ...
Nature nanotechnology 12 (9), 856-860, 2017
3952017
Excitons in a reconstructed moiré potential in twisted WSe 2/WSe 2 homobilayers
TI Andersen, G Scuri, A Sushko, K De Greve, J Sung, Y Zhou, DS Wild, ...
Nature Materials 20 (4), 480-487, 2021
1692021
Broken mirror symmetry in excitonic response of reconstructed domains in twisted MoSe₂/MoSe₂ bilayers
J Sung, Y Zhou, G Scuri, V Zólyomi, TI Andersen, H Yoo, DS Wild, AY Joe, ...
Nature Nanotechnology, 2020
1672020
Tuning Electrical Conductance of MoS2 Monolayers through Substitutional Doping
H Gao, J Suh, MC Cao, AY Joe, F Mujid, KH Lee, S Xie, P Poddar, JU Lee, ...
Nano letters 20 (6), 4095-4101, 2020
1632020
Electrically Tunable Valley Dynamics in Twisted Bilayers
G Scuri, TI Andersen, Y Zhou, DS Wild, J Sung, RJ Gelly, D Bérubé, ...
Physical Review Letters 124 (21), 217403, 2020
1332020
Controlling excitons in an atomically thin membrane with a mirror
Y Zhou, G Scuri, J Sung, RJ Gelly, DS Wild, K De Greve, AY Joe, ...
Physical Review Letters 124 (2), 027401, 2020
942020
Impact of electrode density of states on transport through pyridine-linked single molecule junctions
O Adak, R Korytár, AY Joe, F Evers, L Venkataraman
Nano letters 15 (6), 3716-3722, 2015
882015
Electrically controlled emission from singlet and triplet exciton species in atomically thin light-emitting diodes
AY Joe, LA Jauregui, K Pistunova, AMM Valdivia, Z Lu, DS Wild, G Scuri, ...
Physical Review B 103 (16), L161411, 2021
502021
Thermodynamic behavior of correlated electron-hole fluids in van der Waals heterostructures
R Qi, AY Joe, Z Zhang, Y Zeng, T Zheng, Q Feng, J Xie, E Regan, Z Lu, ...
Nature Communications 14 (1), 8264, 2023
182023
Perfect Coulomb drag and exciton transport in an excitonic insulator
R Qi, AY Joe, Z Zhang, J Xie, Q Feng, Z Lu, Z Wang, T Taniguchi, ...
arXiv preprint arXiv:2309.15357, 2023
162023
Charge Transfer Dynamics in MoSe2/hBN/WSe2 Heterostructures
Y Yoon, Z Zhang, R Qi, AY Joe, R Sailus, K Watanabe, T Taniguchi, ...
Nano letters 22 (24), 10140-10146, 2022
162022
Beam steering at the nanosecond time scale with an atomically thin reflector
TI Andersen, RJ Gelly, G Scuri, BL Dwyer, DS Wild, R Bekenstein, ...
Nature communications 13 (1), 3431, 2022
102022
Transport Study of Charge-Carrier Scattering in Monolayer
AY Joe, K Pistunova, K Kaasbjerg, K Wang, B Kim, DA Rhodes, ...
Physical Review Letters 132 (5), 056303, 2024
82024
Asymmetric photoelectric effect: Auger-assisted hot hole photocurrents in transition metal dichalcogenides
A Sushko, K De Greve, M Phillips, B Urbaszek, AY Joe, K Watanabe, ...
Nanophotonics 10 (1), 105-113, 2020
82020
Spatial light modulation at the nanosecond scale with an atomically thin reflector
TI Andersen, RJ Gelly, G Scuri, BL Dwyer, DS Wild, R Bekenstein, ...
arXiv preprint arXiv:2111.04781, 2021
62021
Electrically controlled emission from triplet charged excitons in atomically thin heterostructures
AY Joe, LA Jauregui, K Pistunova, Z Lu, DS Wild, G Scuri, K De Greve, ...
arXiv preprint arXiv:1912.07678, 2019
62019
Electrically controlled interlayer trion fluid in electron-hole bilayers
R Qi, Q Li, Z Zhang, S Chen, J Xie, Y Ou, Z Cui, DD Dai, AY Joe, ...
arXiv preprint arXiv:2312.03251, 2023
52023
Controlled interlayer exciton ionization in an electrostatic trap in atomically thin heterostructures
AY Joe, AM Mier Valdivia, LA Jauregui, K Pistunova, D Ding, Y Zhou, ...
Nature Communications 15 (1), 6743, 2024
42024
Interlayer Excitons in Atomically Thin van der Waals Semiconductor Heterostructures
AY Joe
Harvard University, 2021
32021
Le système ne peut pas réaliser cette opération maintenant. Veuillez réessayer plus tard.
Articles 1–20