Maser threshold characterization by resonator Q-factor tuning

Author:

Zollitsch Christoph W.ORCID,Ruloff Stefan,Fett YanORCID,Wiedemann Haakon T. A.ORCID,Richter Rudolf,Breeze Jonathan D.ORCID,Kay Christopher W. M.ORCID

Abstract

AbstractWhereas the laser is nowadays an ubiquitous technology, applications for its microwave analog, the maser, remain highly specialized, despite the excellent low-noise microwave amplification properties. The widespread application of masers is typically limited by the need of cryogenic temperatures. The recent realization of a continuous-wave room-temperature maser, using NV centers in diamond, is a first step towards establishing the maser as a potential platform for microwave research and development, yet its design is far from optimal. Here, we design and construct an optimized setup able to characterize the operating space of a maser using NV centers. We focus on the interplay of two key parameters for emission of microwave photons: the quality factor of the microwave resonator and the degree of spin level-inversion. We characterize the performance of the maser as a function of these two parameters, identifying the parameter space of operation and highlighting the requirements for maximal continuous microwave emission.

Funder

Royal Society

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy

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