Inaba Hajime, Hosaka Kazumoto, Yasuda Masami, Nakajima Yoshiaki, Iwakuni Kana, Akamatsu Daisuke, Okubo Sho, Kohno Takuya, Onae Atsushi, Hong Feng-Lei
National Metrology Institute of Japan, 1-1-1 Umezono, Tsukuba, Ibaraki 305-8563, Japan.
Opt Express. 2013 Apr 8;21(7):7891-6. doi: 10.1364/OE.21.007891.
We propose a novel, high-performance, and practical laser source system for optical clocks. The laser linewidth of a fiber-based frequency comb is reduced by phase locking a comb mode to an ultrastable master laser at 1064 nm with a broad servo bandwidth. A slave laser at 578 nm is successively phase locked to a comb mode at 578 nm with a broad servo bandwidth without any pre-stabilization. Laser frequency characteristics such as spectral linewidth and frequency stability are transferred to the 578-nm slave laser from the 1064-nm master laser. Using the slave laser, we have succeeded in observing the clock transition of (171)Yb atoms confined in an optical lattice with a 20-Hz spectral linewidth.
我们提出了一种用于光钟的新型、高性能且实用的激光源系统。通过将梳状模式与1064nm的超稳主激光器进行锁相,以较宽的伺服带宽降低了基于光纤的频率梳的激光线宽。578nm的从激光器在没有任何预稳定的情况下,以较宽的伺服带宽相继与578nm的梳状模式进行锁相。诸如谱线宽度和频率稳定性等激光频率特性从1064nm的主激光器传递到578nm的从激光器。利用该从激光器,我们成功地观测到了囚禁在光晶格中的(171)Yb原子的具有20Hz谱线宽度的钟跃迁。