6 papers
Breaking conservation law enables steady-state entanglement out of equilibrium
Vince Hou, Eric Kleinherbers, Shane P. Kelly +1
We show how entangled steady states can be prepared by purely dissipative dynamics in a system coupled to a thermal environment. While entanglement is hindered by thermalization wh…
Proposal for spin superfluid quantum interference device
Yanyan Zhu, Eric Kleinherbers, Leonid Levitov +1
In easy-plane magnets, the spin superfluid phase was predicted to facilitate coherent spin transport. So far, experimental evidence remains elusive. In this Letter, we propose an i…
Topological hydrodynamics in spin-triplet superconductors
Chau Dao, Eric Kleinherbers, Bjørnulf Brekke +1
Due to the structure of the underlying SO(3) -vector order parameter, spin triplet superconductors exhibit a bulk-edge correspondence linking the circulation of supercur…
Entangling color centers via magnon-antimagnon pair creation
Eric Kleinherbers, Shane P. Kelly, Yaroslav Tserkovnyak
We present how entanglement between a spatially separated pair of color centers can be created by letting them weakly interact with the quantum fluctuations of a nonequilibrium mag…
Correlated emission of electron-current waves
Shane P. Kelly, Eric Kleinherbers, Yanyan Zhu +1
Correlated emission of light offer a potential avenue for entanglement generation between atomic spins, with potential application for sensing and quantum memory. In this work, we…
Topological transport of vorticity on curved magnetic membranes
Chau Dao, Ji Zou, Eric Kleinherbers +1
In this work, we study the transport of vorticity on curved dynamical two-dimensional magnetic membranes. We find that topological transport can be controlled by geometrically redu…