发明名称 Spectral analysis device based on Brillouin dynamic grating and analysis method thereof
摘要 A spectroscopic analysis device based on Brillouin dynamic grating and its analysis method, which provides high resolution and large measuring range at the same time. The device includes a laser device (1), a fiber optic coupler device (2), a first fiber amplifier device (3), a first isolator (4), a first polarization controller (5), a second polarization controller (6), a single-sideband modulation modulator (7), a second fiber amplifier device (8), a second isolator (9), a third polarization controller (10), a single-mode fiber (11), a polarization beam splitter (12), a circulator (13), a photodetector (14), a data acquisition card (15), a fourth polarization controller (16) and a microwave source (17). The method utilizes the Brillouin scattering of two beams of pump light in optical fiber forming Brillouin dynamic gratings as the spectral element and achieve a sub-MHz resolution.
申请公布号 US9581495(B2) 申请公布日期 2017.02.28
申请号 US201414909948 申请日期 2014.06.06
申请人 Harbin Institute of Technology 发明人 Dong Yongkang;Jiang Taofei;Zhou Dengwang;Lv Zhiwei
分类号 G01J3/18;G01J3/02;G01J3/44;G01N21/63;G01J3/12 主分类号 G01J3/18
代理机构 Novoclaims Patent Services LLC 代理人 Novoclaims Patent Services LLC ;Wong Mei Lin
主权项 1. A spectroscopic analysis device based on Brillouin dynamic grating, characterized in that, said spectroscopic analysis device comprising: a laser device (1), a fiber optic coupler device (2), a first fiber amplifier device (3), a first isolator (4), a first polarization controller (5), a second polarization controller (6), a single-sideband modulation modulator (7), a second fiber amplifier device (8), a second isolator (9), a third polarization controller (10), a single-mode fiber (11), a polarization beam splitter (12), a circulator (13), a photodetector (14), a data acquisition card (15), a fourth polarization controller (16) and a microwave source (17), said laser device (1) emits a laser beam which is divided into two beams of pump light through said fiber optic coupler device (2), said first beam of pump light is incident to said first isolator (4) after magnifying processing through said first fiber amplifier device (3), then the emission light from said first isolator (4) is incident to said polarization controller (5), after processing an adjustment of a polarization state through said first polarization controller (5), said first beam of pump light is incident to an A-port of said polarization beam splitter (12); said second beam of pump light is incident to said single-sideband modulation modulator (7) after processing an adjustment of a polarization state through said second polarization controller (6), a frequency provided by said microwave source (17) to said single-sideband modulation modulator (7) is a modulation frequency of Brillouin frequency shift, an optical shifted lower frequency from said single-sideband modulation modulator (7) is incident to said second fiber amplifier device (8), said second beam of pump light is incident to said second isolator (9) after magnifying processing through said second fiber amplifier device (8), then the emission light from said second isolator (9) is incident to said third polarization controller (10), after processing an adjustment of a polarization state through said third polarization controller (8), said second beam of pump light is incident to said single-mode fiber (11), said single-mode fiber (11) has an output terminal connecting to a C-port of said polarization beam splitter (12); a light for testing is incident to an A-port of said circulator (13) after processing an adjustment of a polarization state through said fourth polarization controller (16) and then incident to a B-port of said polarization beam splitter (12) through a B-port of said circulator (13), then incident to said single-mode fiber (11) through a C-port of said polarization beam splitter (12), the light for testing is incident to said c-port of said polarization beam splitter (12) again after reflecting through said single-mode fiber (11) and is emitted from said B-port of said polarization beam splitter (12), the light for testing emitted from said B-port of said polarization beam splitter (12) is incident to said B-port of said circulator (13), then is incident to an optical signal receiving terminal of said photodetector (14) after passing through said C-port of said circulator (13), said photodetector (14) comprises a signal output terminal connecting to a signal acquisition input terminal of said data acquisition card (15).
地址 Harbin, Heilongjiang Province CN