Continuous feedback on a quantum gas coupled to an optical cavity
Abstract
We present an active feedback scheme acting continuously on the state of a quantum gas dispersively coupled to a high-finesse optical cavity. The quantum gas is subject to a transverse pump laser field inducing a self-organization phase transition, where the gas acquires a density modulation and photons are scattered into the resonator. Photons leaking from the cavity allow for a real-time and non-destructive readout of the system. We stabilize the mean intra-cavity photon number through a micro-processor controlled feedback architecture acting on the intensity of the transverse pump field. The feedback scheme can keep the mean intra-cavity photon number nph constant, in a range between nph = 0.17(4) and nph = 27.6(5), and for up to 4 s. Thus we can engage the stabilization in a regime where the system is very close to criticality as well as deep in the self-organized phase. The presented scheme allows us to approach the self-organization phase transition in a highly controlled manner and is a first step on the path towards the realization of many-body phases driven by tailored feedback mechanisms.
- Publication:
-
New Journal of Physics
- Pub Date:
- March 2020
- DOI:
- 10.1088/1367-2630/ab73cc
- arXiv:
- arXiv:1912.02505
- Bibcode:
- 2020NJPh...22c3020K
- Keywords:
-
- quantum gas;
- cavity QED;
- Dicke model;
- phase transition;
- self-organization;
- active feedback;
- real-time measurement;
- Condensed Matter - Quantum Gases
- E-Print:
- 15 pages, 5 figures