• Title/Summary/Keyword: Double resonance optical pumping

Search Result 6, Processing Time 0.025 seconds

Bouble Resonance Optical Pumping in the Transition 5S1/2-5P3/2-4D3/2, 5/2 of Rb Atoms (루비듐 5S1/2-5P3/2-4D3/2, 5/2 전이선에서의 이중공명 광펌핑 분광)

  • Moon, H.S.;Lee, L.;Kim, J.B.
    • Korean Journal of Optics and Photonics
    • /
    • v.16 no.4
    • /
    • pp.297-303
    • /
    • 2005
  • We present the double resonance optical pumping(DROP) spectra according to the laser power, the polarization combination of lasers, and the alignment of lasers in the transition $5P_{3/2}-4D_{5/2}\;and\;5P_{3/2}-4D_{5/2}$ of $^{87}Rb.$ We observed obviously changing DROP spectrum according to the laser power in the transition $5P_{3/2}-4D_{5/2}$ involved the cycling transition. The laser power effects are attributed to the low optical-pumping-effect in the cycling transition. We observed changing DROP spectrum depending on the polarizations of the lasers. The laser polarization effects are attributed to the changing transition probability according to the polarizations of lasers. We compared the co-propagation with the counter-propagation and the spectral linewidths were 12.2 MHz and 6.9 MHz, respectively.

Frequency stabilization of 1.5μm laser diode by using double resonance optical pumping (이중공명 광펌핑을 이용한 1.5μm 반도체 레이저 주파수 안정화)

  • Moon, Han-Sub;Lee, Won-Kyu;Lee, Rim;Kim, Joong-Bok
    • Korean Journal of Optics and Photonics
    • /
    • v.15 no.3
    • /
    • pp.193-199
    • /
    • 2004
  • We present the double resonance optical pumping(DROP) spectra in the transition 5P$_{3}$2/-4D$_{3}$2/ and 5P$_{3}$2/-4D$_{5}$ 2/ of ($^{87}$ Rb) and the frequency stabilization in the $1.5mutextrm{m}$ region using those spectra. Those spectra have high signal-to-noise ratio and narrow spectral linewidth, which is about 10 MHz. We could account fur the relative intensities of the hyperfine states of those spectra by the spontaneous emission into the other state. When the frequency of the $1.5mutextrm{m}$ laser diode was stabilized to the DROP spectrum, the frequency fluctuation was about 0.2 MHz fDr sampling time of 0.1 s and the Allan deviation(or the square root of the Allan variance) was about 1${\times}$10$^{-11}$ for averaging time of l00s.