Generation of photons from vacuum in cavity via time-modulation of a qubit invisible to the field
arXiv:2206.05863 · doi:10.3390/e25060901
Abstract
We propose a scheme for generation of photons from vacuum due to time-modulation of a quantum system coupled indirectly to the cavity field through some ancilla quantum subsystem. We consider the simplest case when the modulation is applied to an artificial 2-level atom (we call t-qubit), while the ancilla is a stationary qubit coupled via the dipole interaction both to the cavity and t-qubit. We find that tripartite entangled states with a small number of photons can be generated from the system ground state under resonant modulations, even when the t-qubit is far detuned from both the ancilla and the cavity, provided its bare and modulation frequencies are properly adjusted as function of other system parameters. We attest our approximate analytic results by numeric simulations and show that photon generation from vacuum persists in the presence of common dissipation mechanisms.
References in corpus (14)
- Circuit Quantum Electrodynamics
- Microwave photonics with superconducting quantum circuits
- Current status of the Dynamical Casimir Effect
- An acoustic analog to the dynamical Casimir effect in a Bose-Einstein condensate
- First-order sidebands in circuit QED using qubit frequency modulation
- Chiral waveguide optomechanics: first order quantum phase transitions with symmetry breaking/
- Quantum discord in the Dynamical Casimir Effect
- Microscopic toy model for Cavity dynamical Casimir effect
- Spectroscopy of superconducting charge qubits coupled by a Josephson inductance
- Photon creation from vacuum and interactions engineering in nonstationary circuit QED
- Switchable coupling for superconducting qubits using double resonance in the presence of crosstalk
- Analytical comparison of the first- and second-order resonances for implementation of the dynamical Casimir effect in nonstationary circuit QED
- Stoquasticity in circuit QED
- Speeding up antidynamical Casimir effect with nonstationary qutrits