Breeze Jonathan, Tan Ke-Jie, Richards Benjamin, Sathian Juna, Oxborrow Mark, Alford Neil McN
Department of Materials, Imperial College London, Royal School of Mines, Exhibition Road, London SW7 2AZ, UK.
Nat Commun. 2015 Feb 20;6:6215. doi: 10.1038/ncomms7215.
Recently, the world's first room-temperature maser was demonstrated. The maser consisted of a sapphire ring housing a crystal of pentacene-doped p-terphenyl, pumped by a pulsed rhodamine-dye laser. Stimulated emission of microwaves was aided by the high quality factor and small magnetic mode volume of the maser cavity yet the peak optical pumping power was 1.4 kW. Here we report dramatic miniaturization and 2 orders of magnitude reduction in optical pumping power for a room-temperature maser by coupling a strontium titanate resonator with the spin-polarized population inversion provided by triplet states in an optically excited pentacene-doped p-terphenyl crystal. We observe maser emission in a thimble-sized resonator using a xenon flash lamp as an optical pump source with peak optical power of 70 W. This is a significant step towards the goal of continuous maser operation.
最近,世界上首个室温微波激射器被展示出来。该微波激射器由一个容纳有并五苯掺杂对三联苯晶体的蓝宝石环组成,由脉冲罗丹明染料激光器泵浦。微波激射器腔的高品质因数和小磁模体积有助于微波的受激发射,但峰值光泵浦功率为1.4千瓦。在此,我们报告了通过将钛酸锶谐振器与光激发的并五苯掺杂对三联苯晶体中的三重态所提供的自旋极化粒子数反转相耦合,实现了室温微波激射器的显著小型化以及光泵浦功率降低两个数量级。我们使用峰值光功率为70瓦的氙闪光灯作为光泵浦源,在一个顶针大小的谐振器中观测到了微波激射器发射。这是朝着连续微波激射器运行目标迈出的重要一步。