Microscopic unitary simulation of circuit QED readout shows qubit T1 drops with increasing drive amplitude when a Purcell notch filter is at the qubit frequency, exposing qualitative defects in Lindblad master equations.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
verdicts
UNVERDICTED 2representative citing papers
Time-dependent quantum simulations reveal spin-dependent snake-like trajectories for electrons released from quantum dots in InSb waveguides under electric drive, persisting with weak magnetic fields and matching semiclassical results.
citing papers explorer
-
First-principles study of dispersive readout in circuit QED
Microscopic unitary simulation of circuit QED readout shows qubit T1 drops with increasing drive amplitude when a Purcell notch filter is at the qubit frequency, exposing qualitative defects in Lindblad master equations.
-
Snakelike trajectories of electrons released from quantum dots driven by the spin Hall effect
Time-dependent quantum simulations reveal spin-dependent snake-like trajectories for electrons released from quantum dots in InSb waveguides under electric drive, persisting with weak magnetic fields and matching semiclassical results.