Adaptive interferometry with photorefractive crystals
暂无分享,去创建一个
[1] Dana Z. Anderson,et al. Modulation-enhanced sensitivity of holographic interferometry. , 2007, Applied optics.
[2] D. Nolte,et al. High-speed adaptive interferometer for optical coherence-domain reflectometry through turbid media. , 2003, Optics letters.
[3] J. Frejlich,et al. Photorefractive crystals for the stabilization of the holographic setup. , 1986, Applied optics.
[4] V. V. Kulikov,et al. Light diffraction and nonlinear image processing in electrooptic Bi12SiO20 crystals , 1979 .
[5] A. Kamshilin,et al. Adaptive interferometer based on wave mixing in a photorefractive crystal under alternating electric field , 2002 .
[6] Sridhar Krishnaswamy,et al. Intrinsic fiber-optic ultrasonic sensor array using multiplexed two-wave mixing interferometry , 2002 .
[7] Jean-Pierre Monchalin,et al. Compact and fast response ultrasonic detection device based on two-wave mixing in a gallium arsenide photorefractive crystal , 2001 .
[8] H. Osterberg,et al. An Interferometer Method of Studying the Vibrations of an Oscillating Quartz Plate , 1932 .
[9] W. D. Cornish,et al. Theory of formation of phase holograms in lithium niobate , 1974 .
[10] Sergei I. Stepanov,et al. Photorefractive Crystals in Coherent Optical Systems , 1991 .
[11] Gérald Roosen,et al. Transmission of time modulated optical signals through an absorbing photorefractive crystal , 1995 .
[12] T. Jaaskelainen,et al. Multimode fiber‐optic sensor using photorefractive double phase conjugator , 1995 .
[13] Philippe Delaye,et al. Novel theoretical aspects on photorefractive ultrasonic detection and implementation of a sensor with an optimum sensitivity , 1997 .
[14] Alexei A Kamshilin,et al. Fast adaptive interferometer on dynamic reflection hologram in CdTe:V. , 2007, Optics express.
[15] Lawrence H. Lin,et al. Chapter 7 – LIGHT SOURCES AND OPTICAL TECHNIQUE , 1971 .
[16] P. Yeh,et al. Introduction to photorefractive nonlinear optics , 1993 .
[17] S. I. Stepanov,et al. Efficient unstationary holographic recording in photorefractive crystals under an external alternating electric field , 1985 .
[18] Jean-Pierre Monchalin,et al. Detection of ultrasonic motion of a scattering surface by photorefractive InP:Fe under an applied dc field , 1997 .
[19] J P Huignard,et al. Two-wave mixing and energy transfer in Bi(12) SiO(20) crystals: application to image amplification and vibration analysis. , 1981, Optics letters.
[20] B. Sturman,et al. Space-charge waves in photorefractive crystals and their parametric excitation , 1993 .
[21] B. Sturman,et al. Theory of photorefractive vectorial wave coupling in cubic crystals. , 1999, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[22] A. Kamshilin,et al. Fast adaptive interferometer with a photorefractive GaP crystal. , 2002, Optics letters.
[23] S. Stepanov,et al. Linear adaptive interferometers via diffusion recording in cubic photorefractive crystals , 1991 .
[24] F. Micheron,et al. High‐sensitivity read‐write volume holographic storage in Bi12SiO20 and Bi12GeO20 crystals , 1976 .
[25] Robert L. Forward,et al. Wideband laser-interferometer gravitational-radiation experiment , 1978 .
[26] E. V. Mokrushina,et al. Adaptive holographic interferometry using photorefractive crystals , 1989 .
[27] Jean-Pierre Monchalin,et al. Detection of ultrasonic motion of a scattering surface by two‐wave mixing in a photorefractive GaAs crystal , 1994 .
[28] Leilei Peng,et al. Adaptive interferometry of protein on a BioCD. , 2007, Applied optics.
[29] Marvin B. Klein,et al. Optimal Properties Of Photorefractive Materials For Optical Data Processing , 1983, Photonics West - Lasers and Applications in Science and Engineering.
[30] Ivan Biaggio,et al. Eye safe large field of view homodyne detection using a photorefractive CdTe:V crystal , 1996 .
[31] Joseph W. Goodman,et al. International Trends in Optics , 1992 .
[32] R. Dewhurst,et al. Optical remote measurement of ultrasound , 1999 .
[33] Jean-Pierre Monchalin,et al. Broadband optical detection of ultrasound by two‐wave mixing in a photorefractive crystal , 1991 .
[34] G. Pedrini,et al. Passive introduction of carrier fringes in real time photorefractive interferometers for single interferogram analysis , 2006 .
[35] V. Volkov,et al. Adaptive Correlation Filter Based on Dynamic Reflection Hologram Formed in Photorefractive Bi12TiO20 Crystal , 2005 .
[36] T. Jaaskelainen,et al. Adaptive correlation filter for stabilization of interference-fiber-optic sensors , 1998 .
[37] M. S. Ner,et al. Detector for an optical-fiber acoustic sensor using dynamic holographic interferometry. , 1980, Optics letters.
[38] Sridhar Krishnaswamy,et al. Adaptive demodulation of dynamic signals from fiber Bragg gratings using two-wave mixing technology. , 2006, Applied optics.
[39] Hirokazu Matsumoto,et al. Optical Measurement of Ultrasonic Nanometer Motion of Rough Surface by Two-Wave Mixing in Bi12SiO20 , 1995 .
[40] James B. Spicer,et al. Theoretical noise-limited sensitivity of classical interferometry , 1987 .
[41] B. Sturman,et al. Linear detection of phase-modulated optical signals with ac-biased cubic photorefractive crystals: Influence of coupling effects , 2006 .