发明名称 Method for brightness enhancement and modes manipulation of a multimode optical fiber
摘要 The invention relates to adaptive optics techniques applied to alter the modal structure of light propagating in an optical fiber. In particular the invention relates to altering the modal structure in a multimode beam propagating in a multimode fiber by lowering the number of higher modes. The method comprises combining a wavefront sensor and/or a power sensor with a phase control actuator and actuator control algorithms, to alter the phase structure of the beam thereby to eliminate higher modes. The corrected beam can be then effectively coupled into a smaller diameter fiber with minimum loss of energy and concentrated to smaller spot sizes limited by diffraction.
申请公布号 US9329416(B2) 申请公布日期 2016.05.03
申请号 US201314404221 申请日期 2013.05.26
申请人 RAFAEL ADVANCED DEFENSE SYSTEMS LTD. 发明人 Regelman Dan Vadim;Segev Yehonatan;Yosub Shay
分类号 G02F1/035;G02B6/14;G02F1/01;H01S3/067 主分类号 G02F1/035
代理机构 Roach Brown McCarthy & Gruber, P.C. 代理人 Roach Brown McCarthy & Gruber, P.C. ;McCarthy Kevin D.
主权项 1. A method for lowering a number of higher modes in a multimode (MM) beam propagating in a MM fiber, said method comprising: (a) activating at least one phase control actuator to introduce local controlled phase changes in said fiber at the input or output of said fiber; (b) monitoring the electro-magnetic field intensity distribution of the phase corrected beam with at least one of a wavefront sensor and a power sensor; and (c) applying actuator control algorithms to the output of at least one of said wavefront sensor and said power sensor to provide control feedback to said phase control actuators in a closed feedback loop; thereby allowing mode population control with no power loss by shifting higher modes into lower modes; wherein the phase correction takes place within the MM fiber by causing local controlled refractive index changes in at least one of the following ways: (i) applying controlled mechanical stress at least one point along the fiber; (ii) applying electric fields in MM fibers having a considerable electro-optic coefficient; (iii) inserting the MM fiber into a waveguide made of material with a considerable electro-optic coefficient; and (iv) using the magneto-optical Kerr effect in polarization maintaining fibers.
地址 Haifa IL