Silicon single-crystal cryogenic optical resonator.
暂无分享,去创建一个
Eugen Wiens | Stephan Schiller | Heiko Luckmann | E. Wiens | A. Nevsky | I. Ernsting | S. Schiller | Ingo Ernsting | Alexander Nevsky | Qun-feng Chen | Qun-Feng Chen | Ulrich Rosowski | H. Luckmann | U. Rosowski
[1] T. F. Smith,et al. The low-temperature thermal expansion and Gruneisen parameters of some tetrahedrally bonded solids , 1975 .
[2] G. K. White,et al. Linear thermal expansion measurements on silicon from 6 to 340 K , 1977 .
[3] Alan W. Hoffman,et al. Measurements of the mechanical Q of single-crystal silicon at low temperatures , 1978 .
[4] John L. Hall,et al. Laser phase and frequency stabilization using an optical resonator , 1983 .
[5] J. J. Hamilton,et al. Cryogenic monocrystalline silicon Fabry–Perot cavity for the stabilization of laser frequency , 1991 .
[6] Stephan Schiller,et al. CRYOGENIC OPTICAL RESONATORS : A NEW TOOL FOR LASER FREQUENCY STABILIZATION AT THE 1 HZ LEVEL , 1997 .
[7] C. Braxmaier,et al. Ultrahigh long-term dimensional stability of a sapphire cryogenic optical resonator. , 1998, Optics letters.
[8] C. Braxmaier,et al. Tests of relativity using a cryogenic optical resonator. , 2001, Physical review letters.
[9] Kenji Numata,et al. Thermal-noise limit in the frequency stabilization of lasers with rigid cavities. , 2004, Physical review letters.
[10] C. Braxmaier,et al. Experimental limits for low-frequency space-time fluctuations from ultrastable optical resonators , 2004, gr-qc/0401103.
[11] P. Antonini,et al. Test of constancy of speed of light with rotating cryogenic optical resonators , 2005 .
[12] Takayuki Tomaru,et al. Measurement of the mechanical loss of a cooled reflective coating for gravitational wave detection , 2006 .
[13] Lei Chen,et al. A sub-40-mHz-linewidth laser based on a silicon single-crystal optical cavity , 2011, Nature Photonics.
[14] A. Ludlow,et al. Making optical atomic clocks more stable with 10-16-level laser stabilization , 2011, 1101.1351.
[15] J. Ye,et al. Comparison of two independent Sr optical clocks with 1×10(-17) stability at 10(3) s. , 2012, Physical review letters.
[16] Stephan Schiller,et al. Locking the frequency of lasers to an optical cavity at the 1.6×10−17 relative instability level , 2012, 1203.6247.
[17] Wei Zhang,et al. Tenfold reduction of Brownian noise in high-reflectivity optical coatings , 2013, Nature Photonics.
[18] I. Martin,et al. Cryogenic measurements of mechanical loss of high-reflectivity coating and estimation of thermal noise. , 2013, Optics letters.