Back to Search Start Over

Observation of dark states in a superconductor diamond quantum hybrid system

Authors :
Takaaki Shimo-Oka
Kosuke Kakuyanagi
Kouichi Semba
Xiaobo Zhu
Kae Nemoto
Norikazu Mizuochi
Shiro Saito
Yuichiro Matsuzaki
Robert Amsuss
William J. Munro
Source :
Nature Communications
Publication Year :
2013

Abstract

The hybridization of distinct quantum systems has opened new avenues to exploit the best properties of these individual systems. Superconducting circuits and electron spin ensembles are one such example. Strong coupling and the coherent transfer and storage of quantum information has been achieved with nitrogen vacancy centres in diamond. Recently, we have observed a remarkably sharp resonance (~1 MHz) at 2.878 GHz in the spectrum of flux qubit negatively charged nitrogen vacancy diamond hybrid quantum system under zero external magnetic field. This width is much narrower than that of both the flux qubit and spin ensemble. Here we show that this resonance is evidence of a collective dark state in the ensemble, which is coherently driven by the superposition of clockwise and counter-clockwise macroscopic persistent supercurrents flowing in the flux qubit. The collective dark state is a unique physical system and could provide a long-lived quantum memory. Recently, a sharp resonance was observed in the spectrum of a flux-qubit nitrogen-vacancy-centre hybrid quantum system that is much narrower than that of either the flux qubit or the spin ensemble. Zhu et al.investigate this resonance and find evidence of a coherently driven collective dark state.

Details

ISSN :
20411723
Volume :
5
Database :
OpenAIRE
Journal :
Nature communications
Accession number :
edsair.doi.dedup.....d2a1d8b9e9d6a274b08ae337a4246d48