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Realizing topological superconductivity in tunable Bose-Fermi mixtures with transition metal dichalcogenide heterostructures
Heterostructures of two-dimensional transition metal dichalcogenides are emerging as a
promising platform for investigating exotic correlated states of matter. Here, we propose to …
promising platform for investigating exotic correlated states of matter. Here, we propose to …
Electrically tunable layer-hybridized trions in doped WSe2 bilayers
Doped van der Waals heterostructures host layer-hybridized trions, ie charged excitons with
layer-delocalized constituents holding promise for highly controllable optoelectronics …
layer-delocalized constituents holding promise for highly controllable optoelectronics …
Dynamical exciton condensates in biased electron-hole bilayers
Bilayer materials may support interlayer excitons comprised of electrons in one layer and
holes in the other. In experiments, a nonzero exciton density is typically sustained by a bias …
holes in the other. In experiments, a nonzero exciton density is typically sustained by a bias …
Selective control of valley polarization in monolayer transition metal dichalcogenides among multiexcitonic states
In 2018, an inverted valley polarization (VP) for the biexciton emission in monolayer WS 2
was experimentally observed [Nagler et al., Phys. Rev. Lett. 121, 057402 (2018)]. Here, we …
was experimentally observed [Nagler et al., Phys. Rev. Lett. 121, 057402 (2018)]. Here, we …
Competition between excitonic insulators and quantum Hall states in correlated electron-hole bilayers
Excitonic insulators represent a unique quantum phase of matter, providing a rich ground for
studying exotic quantum bosonic states. Strongly coupled electron-hole bilayers, which host …
studying exotic quantum bosonic states. Strongly coupled electron-hole bilayers, which host …