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Proposal for a room-temperature diamond maser

机译:关于室温金刚石砂浆的建议

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摘要

The application of masers is limited by its demanding working conditions (high vacuum or low temperature). A room-temperature solid-state maser is highly desirable, but the lifetimes of emitters (electron spins) in solids at room temperature are usually too short (similar to ns) for population inversion. Masing from pentacene spins in p-terphenyl crystals, which have a long spin lifetime (similar to 0.1 ms), has been demonstrated. This maser, however, operates only in the pulsed mode. Here we propose a room-temperature maser based on nitrogen-vacancy centres in diamond, which features the longest known solid-state spin lifetime (similar to 5 ms) at room temperature, high optical pumping efficiency (similar to 10(6) s (-1)) and material stability. Our numerical simulation demonstrates that a maser with a coherence time of approximately minutes is feasible under readily accessible conditions (cavity Q-factor similar to 5 x 10(4), diamond size similar to 3 x 3 x 0.5 mm(3) and pump power <10 W). A room-temperature diamond maser may facilitate a broad range of microwave technologies.
机译:masers的应用受到其苛刻的工作条件(高真空或低温)的限制。室温固态激射器是非常理想的,但是在室温下,固体中发射极(电子自旋)的寿命通常太短(类似于ns),无法进行粒子数反转。对苯并三苯并五苯晶体的自旋寿命很长(约0.1毫秒),已得到证明。但是,该激射器仅在脉冲模式下运行。在这里,我们提出了一种基于金刚石中氮原子空位中心的室温maser,其特征是室温下已知的固态自旋寿命最长(约5 ms),光泵浦效率高(约10(6)s( -1))和材料稳定性。我们的数值模拟表明,在容易接近的条件下(相干Q因子类似于5 x 10(4),金刚石尺寸类似于3 x 3 x 0.5 mm(3),泵浦功率),相干时间约为数分钟的maser是可行的<10 W)。室温金刚石砂浆可以促进广泛的微波技术。

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