Gruet F, Al-Samaneh A, Kroemer E, Bimboes L, Miletic D, Affolderbach C, Wahl D, Boudot R, Mileti G, Michalzik R
Time and Frequency Laboratory, Physics Department, University of Neuchâtel, Avenue de Bellevaux 51, 2000 Neuchâtel, Switzerland.
Opt Express. 2013 Mar 11;21(5):5781-92. doi: 10.1364/OE.21.005781.
We report on the characterization and validation of custom-designed 894.6 nm vertical-cavity surface-emitting lasers (VCSELs), for use in miniature Cs atomic clocks based on coherent population trapping (CPT). The laser relative intensity noise (RIN) is measured to be 1 × 10(-11) Hz(-1) at 10 Hz Fourier frequency, for a laser power of 700 μW. The VCSEL frequency noise is 10(13) · f(-1) Hz(2)/Hz in the 10 Hz < f < 10(5) Hz range, which is in good agreement with the VCSEL’s measured fractional frequency instability (Allan deviation) of ≈ 1 × 10(-8) at 1 s, and also is consistent with the VCSEL’s typical optical linewidth of 20-25 MHz. The VCSEL bias current can be directly modulated at 4.596 GHz with a microwave power of -6 to +6 dBm to generate optical sidebands for CPT excitation. With such a VCSEL, a 1.04 kHz linewidth CPT clock resonance signal is detected in a microfabricated Cs cell filled with Ne buffer gas. These results are compatible with state-of-the-art CPT-based miniature atomic clocks exhibiting a short-term frequency instability of 2-3 × 10(-11) at τ = 1 s and few 10(-12) at τ = 10(4) s integration time..
我们报告了定制设计的894.6纳米垂直腔面发射激光器(VCSEL)的特性表征和验证情况,该激光器用于基于相干布居囚禁(CPT)的微型铯原子钟。对于700微瓦的激光功率,在10赫兹傅里叶频率下测得激光相对强度噪声(RIN)为1×10⁻¹¹赫兹⁻¹。在10赫兹<f<10⁵赫兹范围内,VCSEL的频率噪声为10¹³·f⁻¹赫兹²/赫兹,这与VCSEL在1秒时测得的约1×10⁻⁸的分数频率不稳定度(阿伦偏差)良好吻合,也与VCSEL典型的20 - 25兆赫光学线宽一致。VCSEL的偏置电流可以用-6至+6分贝毫瓦的微波功率在4.596吉赫兹直接调制,以产生用于CPT激发的光边带。利用这样一个VCSEL,在充满氖缓冲气体的微纳加工铯气室中检测到了线宽为1.04千赫兹的CPT时钟共振信号。这些结果与基于CPT的最先进微型原子钟兼容,后者在τ = 1秒时短期频率不稳定度为2 - 3×10⁻¹¹,在τ = 10⁴秒积分时间时为几10⁻¹²。