`Maser-in-a-Shoebox': a portable plug-and-play maser device at room-temperature and zero magnetic-field
arXiv:2310.09269 · doi:10.1063/5.0181318
Abstract
Masers, the microwave analogues of lasers, have seen a renaissance owing to the discovery of gain media that mase at room-temperature and zero-applied magnetic field. However, despite the ease with which the devices can be demonstrated under ambient conditions, achieving the ubiquity and portability which lasers enjoy has to date remained challenging. We present a maser device with a miniaturized maser cavity, gain material and laser pump source that fits within the size of a shoebox. The gain medium used is pentacene-doped in para-terphenyl and it is shown to give a strong masing signal with a peak power of -5 dBm even within a smaller form factor. The device is also shown to mase at different frequencies within a small range of 1.5 MHz away from the resonant frequency. The portability and simplicity of the device, which weighs under 5 kg, paves the way for demonstrators particularly in the areas of low-noise amplifiers, quantum sensors, cavity quantum electrodynamics and long-range communications.
References in corpus (7)
- Microwaves in Quantum Computing
- Coherent Microwave Emission of a Gain-Driven Polariton
- Propagating Quantum Microwaves: Towards Applications in Communication and Sensing
- Room-temperature quasi-continuous-wave pentacene maser pumped by an invasive Ce:YAG luminescent concentrator
- Quasi-Continuous Cooling of a Microwave Mode on a Benchtop using Hyperpolarized NV Diamond
- Superradiance of Spin Defects in Silicon Carbide for Maser Applications
- Maximum Entropy Spectral Analysis: an application to gravitational waves data analysis