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    • 3. 发明授权
    • High-power, phase-locked, laser arrays
    • 大功率,锁相,激光阵列
    • US08340150B2
    • 2012-12-25
    • US13113976
    • 2011-05-23
    • Boris Leonidovich Volodin
    • Boris Leonidovich Volodin
    • H01S5/00
    • H01S3/1305H01S5/005H01S5/065H01S5/0654H01S5/141H01S5/148H01S5/4012H01S5/4062H01S5/4068
    • High-power, phased-locked, laser arrays as disclosed herein utilize a system of optical elements that may be external to the laser oscillator array. Such an external optical system may achieve mutually coherent operation of all the emitters in a laser array, and coherent combination of the output of all the lasers in the array into a single beam. Such an “external gain harness” system may include: an optical lens/mirror system that mixes the output of all the emitters in the array; a holographic optical element that combines the output of all the lasers in the array, and an output coupler that selects a single path for the combined output and also selects a common operating frequency for all the coupled gain regions.
    • 如本文所公开的大功率锁相激光器阵列利用可能在激光振荡器阵列外部的光学元件系统。 这样的外部光学系统可以实现激光器阵列中所有发射体的相互相干的操作,并且阵列中的所有激光器的输出的相干组合成单个光束。 这种外部增益线束系统可以包括:将阵列中的所有发射器的输出混合的光学透镜/反射镜系统; 组合阵列中所有激光器的输出的全息光学元件以及为组合输出选择单个路径并且还为所有耦合增益区域选择公共工作频率的输出耦合器。
    • 4. 发明申请
    • HIGH-POWER, PHASE-LOCKED, LASER ARRAYS
    • 高功率,相位锁定,激光阵列
    • US20120027035A1
    • 2012-02-02
    • US13113976
    • 2011-05-23
    • Boris Leonidovich Volodin
    • Boris Leonidovich Volodin
    • H01S3/13G02B27/10
    • H01S3/1305H01S5/005H01S5/065H01S5/0654H01S5/141H01S5/148H01S5/4012H01S5/4062H01S5/4068
    • High-power, phased-locked, laser arrays as disclosed herein utilize a system of optical elements that may be external to the laser oscillator array. Such an external optical system may achieve mutually coherent operation of all the emitters in a laser array, and coherent combination of the output of all the lasers in the array into a single beam. Such an “external gain harness” system may include: an optical lens/mirror system that mixes the output of all the emitters in the array; a holographic optical element that combines the output of all the lasers in the array, and an output coupler that selects a single path for the combined output and also selects a common operating frequency for all the coupled gain regions.
    • 如本文所公开的大功率锁相激光器阵列利用可能在激光振荡器阵列外部的光学元件系统。 这样的外部光学系统可以实现激光器阵列中所有发射体的相互相干的操作,并且阵列中的所有激光器的输出的相干组合成单个光束。 这种“外部增益线束”系统可以包括:光学透镜/镜子系统,其将阵列中的所有发射器的输出混合; 组合阵列中所有激光器的输出的全息光学元件以及为组合输出选择单个路径并且还为所有耦合增益区域选择公共工作频率的输出耦合器。
    • 5. 发明申请
    • Compact, Low Cost Raman Monitor For Single Substances
    • 用于单一物质的紧凑型低成本拉曼监测器
    • US20120019820A1
    • 2012-01-26
    • US13165333
    • 2011-06-21
    • Vladimir Sinisa BanBoris Leonidovich VolodinNeal R. Stoker
    • Vladimir Sinisa BanBoris Leonidovich VolodinNeal R. Stoker
    • G01J3/44
    • G01J3/4412G01N21/65G01N21/658G01N2021/1793
    • Apparatus for performing Raman analysis may include a laser source module, a beam delivery and signal collection module, a spectrum analysis module, and a digital signal processing module. The laser source module delivers a laser beam to the beam delivery and signal collection module. The beam delivery and signal collection module delivers the laser source beam to a sample, collects Raman scattered light scattered from the sample, and delivers the collected Raman scattered light to the spectrum analysis module. The spectrum analysis module demultiplexes the Raman scattered light into discrete Raman bands of interest, detects the presence of signal energy in each of the Raman bands, and produces a digital signal that is representative of the signal energy present in each of the Raman bands. The digital signal processing module is adapted to perform a Raman analysis of the sample.
    • 用于执行拉曼分析的装置可以包括激光源模块,光束传递和信号采集模块,频谱分析模块和数字信号处理模块。 激光源模块将激光束传送到光束传送和信号采集模块。 光束传送和信号采集模块将激光源光束传送到样品,收集从样品散射的拉曼散射光,并将收集的拉曼散射光传送到光谱分析模块。 频谱分析模块将拉曼散射光解复用为感兴趣的离散拉曼频带,检测每个拉曼频带中的信号能量的存在,并产生代表每个拉曼频带中存在的信号能量的数字信号。 数字信号处理模块适于对样品进行拉曼分析。
    • 8. 发明授权
    • Fiber optic devices having volume Bragg grating elements
    • 具有体积布拉格光栅元件的光纤器件
    • US07528385B2
    • 2009-05-05
    • US11397663
    • 2006-04-03
    • Boris L. VolodinVladimir Sinisa Ban
    • Boris L. VolodinVladimir Sinisa Ban
    • G02B6/34G02B5/32
    • G02B6/29383G02B5/203G02B6/2931G02B6/29311G02B6/4215G02B6/4246G03H1/0005G03H1/0248G03H1/16
    • Apparatus and methods for controlling the spectral shape of a Bragg grating element (“VBG”) filter are disclosed. An optical system can be adapted to deliver a recording beam to the front focal plane of a lens. The recording beam may cause to be formed, in the front focal plane of the lens, an optical distribution that represents the desired filter response of the VBG element. A recording medium sample may be placed in the back focal plane of the same lens. The lens creates a true Fourier transform of the distribution in the optical plane directly on the recording medium. Via coherent interference with the plane reference wave, both the amplitude and the phase of the Fourier transform are transferred to the amplitude and phase envelope of the VBG imprinted on the recording material. A mask representing the desired filter shape may be placed in the front focal plane of the lens. The recording beam may be shone through the mask, such that a masked recording beam exits the mask in the front focal plane of the lens. The masked recording beam may represent the desired filter response of the VBG element.
    • 公开了用于控制布拉格光栅元件(“VBG”)滤波器的光谱形状的装置和方法。 光学系统可以适于将记录光束传送到透镜的前焦平面。 可能导致记录光束在透镜的前焦平面中形成表示VBG元件的期望滤光响应的光分布。 记录介质样品可以放置在相同透镜的后焦平面中。 该透镜直接在记录介质上创建光学平面中的分布的真实傅立叶变换。 通过与平面参考波的相干干涉,傅立叶变换的幅度和相位都被转移到记录材料上印刷的VBG的幅度和相位包络。 表示期望的滤波器形状的掩模可以被放置在透镜的前焦平面中。 记录光束可以通过掩模照射,使得掩蔽的记录光束离开透镜的前焦平面中的掩模。 掩蔽的记录光束可以表示VBG元件的期望的滤波器响应。