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    • 1. 发明授权
    • High brightness laser diode source
    • 高亮度激光二极管源
    • US06222864B1
    • 2001-04-24
    • US09074550
    • 1998-05-07
    • Robert G. WaartsRobert J. LangJulian S. OsinskiEdmund L. WolakJohn Endriz
    • Robert G. WaartsRobert J. LangJulian S. OsinskiEdmund L. WolakJohn Endriz
    • H01S500
    • G02B27/09G02B19/0014G02B19/0052G02B27/0955H01S3/005H01S5/005H01S5/1064H01S5/4025
    • Coherent light sources combining a semiconductor optical source with a light diverging region, such as a flared resonator type laser diode or flared amplifier type MOPA, with a single lens adapted to correct the astigmatism of the light beam emitted from the source is disclosed. The lens has an acircular cylindrical or toroidal first surface and an aspheric or binary diffractive second surface. The first surface has a curvature chosen to substantially equalize the lateral and transverse divergences of the astigmatic beam. Sources with an array of light diverging regions producing an array of astigmatic beams and a single astigmatism-correcting lens array aligned with the beams are also disclosed. The single beam source can be used in systems with frequency converting nonlinear optics. The array source can be stacked with other arrays to produce very high output powers with high brightness.
    • 公开了将半导体光源与光发散区域(例如扩口谐振器型激光二极管或扩口式MOPA)组合的相干光源,其具有适于校正从源发射的光束的散光的单个透镜。 透镜具有圆形圆柱形或环形第一表面和非球面或二元衍射第二表面。 第一表面具有被选择为基本上均衡散光束的横向和横向分歧的曲率。 还公开了具有产生散光束阵列的光发散区域阵列的源和与光束对准的单个像散校正透镜阵列。 单光束源可用于具有变频非线性光学系统。 阵列源可以与其他阵列堆叠,以产生高亮度的非常高的输出功率。
    • 4. 发明授权
    • Optical amplifier with complementary modulation signal inputs
    • 具有互补调制信号输入的光放大器
    • US5657153A
    • 1997-08-12
    • US408030
    • 1995-03-21
    • John EndrizDavid F. WelchRobert G. WaartsSteven SandersDonald R. Scifres
    • John EndrizDavid F. WelchRobert G. WaartsSteven SandersDonald R. Scifres
    • H04B10/17H01S3/00H04B10/04
    • H04B10/291H04B10/2912H01S3/005H01S3/06712H01S3/06754H01S3/10015H01S3/2383H01S5/06216H01S5/4087
    • In an optical transmission medium, such as a fiber amplifier, two optically distinguishable signals with complementary modulation are both inputted into the amplifying medium for encoding information, particularly a serial stream of digital data, or alternatively, redundant encoding of pulses. The gain profile in the medium is preferably maintained approximately constant at all times, so that whichever amplified signal is used as the primary information carrier, its output intensity will be substantially stable from pulse to pulse, independent of recent pulse history. The two complementary signals may have different orthogonal linear polarizations or wavelengths with the same stimulated emission cross-section, so that the population inversion profile stays constant, whichever signal happens to be on at a given moment. The two signals may be derived from separate intensity modulated laser diode signal sources, from a single laser diode signal source switched between two emission wavelengths, or from a single laser diode with constant emission coupled to a directional coupler directing two complementary polarized light signals into the fiber amplifying medium.
    • 在诸如光纤放大器的光传输介质中,具有互补调制的两个光学可区分信号都被输入到用于对信息进行编码的放大媒体,特别是串行数字数据流,或备选地,脉冲的冗余编码。 介质中的增益分布优选总是保持近似恒定,因此无论使用哪个放大信号作为主信息载体,其输出强度将基本上与脉冲相比稳定,与最近的脉冲历史无关。 两个互补信号可以具有不同的具有相同受激发射横截面的正交线性偏振或波长,使得群体反转谱保持恒定,无论哪个信号在给定时刻发生什么信号。 两个信号可以从单独的强度调制的激光二极管信号源获得,来自在两个发射波长之间切换的单个激光二极管信号源,或者来自具有恒定发射的单个激光二极管耦合到定向耦合器,其将两个互补偏振光信号引入到 光纤放大介质。
    • 5. 发明授权
    • Stabilization of laser sources with closely-coupled optical reflectors using an internal dither circuit
    • 使用内部抖动电路使紧密耦合的光反射器稳定激光源
    • US06215809B1
    • 2001-04-10
    • US09197062
    • 1998-11-20
    • Mehrdad ZiariRobert G. WaartsRobert J. LangJohn DeAndreaMichael L. BortzBrian F. Ventrudo
    • Mehrdad ZiariRobert G. WaartsRobert J. LangJohn DeAndreaMichael L. BortzBrian F. Ventrudo
    • H01S308
    • H01S3/094003H01S5/0652H01S5/146
    • Apparatus for providing a laser source optically coupled to an optical waveguide, such as an optical fiber, having a reflective grating positioned from the output facet of the laser source a distance equal to or greater than the coherence length of the laser source providing a portion of reflective feedback into the laser source optical cavity to maintain wavelength operation of the laser source in spite of changes in the laser operating temperature or drive current based upon coherence collapse in the laser operation. In cases where the fiber grating is positioned in the fiber within the coherence length of the laser source, intermittent coherence collapse, as opposed to continuous coherence collapse, is unavoidable. In cases where such a laser source is a pumping source for a solid state gain medium, such as an optical amplifier or laser having an active gain element, e.g., an Er doped amplifier, undesirable perturbations in the laser source output are present which have a deleterious effect on the operation of the solid state gain medium. The effect of these undesirable perturbations are substantially removed by a small, continuous variation or dither in the driving current of the laser source having a rate of variation that exceeds the active gain element excited state lifetime thereby controlling the switching of the laser source operation between states of coherency and coherence collapse. As a result, the effects of laser source perturbations are avoided so as not to have an effect on the operation of the coupled solid state gain medium so that its gain stability is improved. Various embodiments of dither circuits are disclosed. In addition, polarization-maintaining behavior is induced in optical waveguides to further improve laser source stability.
    • 用于提供光学耦合到诸如光纤的光波导的激光源的设备,其具有从激光源的输出小面定位的反射光栅,距离等于或大于激光源的相干长度,该距离提供一部分 反射反射到激光源光学腔中以保持激光源的波长操作,尽管激光器工作温度或驱动电流基于激光器操作中的相干性崩溃而发生变化。 在光纤光栅位于激光源的相干长度内的纤维光纤的情况下,与连续相干塌陷相反,间歇性相干塌陷是不可避免的。 在这种激光源是用于固态增益介质的泵浦源的情况下,例如具有有源增益元件(例如,Er掺杂放大器)的光放大器或激光器,存在激光源输出中的不期望的扰动,其具有 对固态增益介质的操作有害的影响。 这些不期望的扰动的效果通过在激光源的驱动电流中的小的连续变化或抖动基本上消除,其具有超过有源增益元件激发态寿命的变化率,从而控制状态之间的激光源操作的切换 的一致性和一致性崩溃。 结果,避免了激光源扰动的影响,从而不会对耦合的固态增益介质的操作产生影响,从而提高了其增益稳定性。 公开了抖动电路的各种实施例。 此外,在光波导中引起偏振保持行为以进一步提高激光源的稳定性。
    • 7. 发明授权
    • Extended cavity laser device with bulk transmission grating
    • 扩展腔激光器件,具有散装传输光栅
    • US07177340B2
    • 2007-02-13
    • US10701258
    • 2003-11-04
    • Robert J. LangRobert G. Waarts
    • Robert J. LangRobert G. Waarts
    • H01S3/10H01S3/08
    • H01S5/141H01S3/1055H01S5/0092H01S5/0687H01S5/143H01S5/32341
    • A laser apparatus is disclosed utilizing a laser diode having a reflective back facet and a front facet having a reflectance of less than about 1% for emitting an optical beam at a fundamental frequency along an optical path. A collimating lens is provided for collimating the optical beam into a collimated beam. A transmission grating is optically coupled to receive the collimated beam and returns a portion of the collimated beam back into the laser diode by means of diffraction through lens and the laser diode front facet. The laser diode reflective back facet and the transmission grating form an extended laser cavity. In operation, a substantial portion of the collimated beam is transmitted through the transmission grating for producing the laser output beam propagating along the optical path.
    • 公开了一种利用具有反射背面的激光二极管和具有小于约1%的反射率的激光二极管的激光装置,用于沿着光路发射基波的光束。 提供准直透镜以将光束准直成准直光束。 透射光栅被光学耦合以接收准直光束,并且通过透镜和激光二极管前面的衍射将准直光束的一部分返回到激光二极管中。 激光二极管反射背面和透射光栅形成延伸的激光腔。 在操作中,准直光束的大部分透射通过透射光栅,以产生沿光路传播的激光输出光束。
    • 10. 发明授权
    • High power pumped MID-IR wavelength devices using nonlinear frequency mixing (NFM)
    • 使用非线性频率混合(NFM)的大功率泵浦MID-IR波长器件
    • US06229828B1
    • 2001-05-08
    • US09123387
    • 1998-07-27
    • Steven SandersRobert J. LangRobert G. Waarts
    • Steven SandersRobert J. LangRobert G. Waarts
    • H01S310
    • G02F1/3534G02F1/3558G02F1/39G02F2001/3542G02F2001/3546G02F2001/3548
    • Laser diode pumped mid-IR wavelength sources include at least one high power, near-IR wavelength, injection and/or sources wherein one or both of such sources may be tunable providing a pump wave output beam to a quasi-phase matched (QPM) nonlinear frequency mixing (NFM) device. The NFM device may be a difference frequency mixing (DFM) device or an optical parametric oscillation (OPO) device. Wavelength tuning of at least one of the sources advantageously provides the ability for optimizing pump or injection wavelengths to match the QPM properties of the NFM device enabling a broad range of mid-IR wavelength selectivity. Also, pump powers are gain enhanced by the addition of a rare earth amplifier or oscillator, or a Raman/Brillouin amplifier or oscillator between the high power source and the NFM device. Further, polarization conversion using Raman or Brillouin wavelength shifting is provided to optimize frequency conversion efficiency in the NFM device.
    • 激光二极管泵浦中红外波长源包括至少一个高功率,近红外波长,注入和/或源,其中这些源中的一个或两个可以是可调谐的,以将泵浦波输出波束提供给准相位匹配(QPM) 非线性频率混合(NFM)装置。 NFM装置可以是差分混频(DFM)装置或光参量振荡(OPO)装置。 至少一个源的波长调谐有利地提供了优化泵浦或注入波长以匹配NFM器件的QPM特性的能力,从而实现宽范围的中红外波长选择性。 此外,通过在高功率源和NFM器件之间添加稀土放大器或振荡器或拉曼/布里渊放大器或振荡器来增加泵浦功率。 此外,提供使用拉曼或布里渊波长移位的偏振转换以优化NFM器件中的频率转换效率。