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    • 1. 发明申请
    • LOW TIMING JITTER, SINGLE FREQUENCY, POLARIZED LASER
    • 低时序抖动,单频,极化激光
    • US20120140782A1
    • 2012-06-07
    • US12962214
    • 2010-12-07
    • Juan C. SOTELORobert D. STULTZDavid FILGAS
    • Juan C. SOTELORobert D. STULTZDavid FILGAS
    • H01S3/11H01S3/16B23P11/00H01S3/094
    • H01S3/10061H01S3/0612H01S3/08009H01S3/094053H01S3/094076H01S3/09415H01S3/1061H01S3/113H01S3/1618H01S3/1643Y10T29/49826
    • A laser system includes a first laser diode configured to generate first light in a first direction along an optical path; a laser resonator having a gain medium, anisotropic saturable absorber, and a wavelength selective outcoupler positioned in the optical path upon which the first light impinges a first side thereof so as to pump the gain medium (first light from the first laser diode is absorbed in the gain medium), a second laser diode configured to generate second light in a second direction along the optical path toward a second side of the resonator, passes through the wavelength selective outcoupler unimpeded and is absorbed by the saturable absorber element, wherein the second light has a polarization corresponding to the orientation of the saturable absorber; the wavelength selective outcoupler is configured to only allow third light of a predetermined wavelength to have feedback in the laser resonator, achieve gain in the resonator, and be emitted from the laser resonator. A method for forming a laser system is also described.
    • 激光系统包括:第一激光二极管,被配置为沿着光路在第一方向上产生第一光; 具有增益介质的激光谐振器,各向异性可饱和吸收体和位于光路中的波长选择性输出耦合器,第一光入射到第一侧,以便泵浦增益介质(第一激光二极管的第一光被吸收在 所述增益介质)被配置为沿着所述光路朝向所述谐振器的第二侧沿第二方向产生第二光的第二激光二极管穿过所述波长选择性输出耦合器而不受阻碍并被所述可饱和吸收元件吸收,其中所述第二光 具有对应于可饱和吸收体的取向的极化; 波长选择性输出耦合器被配置为仅允许预定波长的第三光在激光谐振器中具有反馈,实现谐振器中的增益,并且从激光谐振器发射。 还描述了一种用于形成激光系统的方法。
    • 2. 发明申请
    • INTRA-CAVITY NON-DEGENERATE LAGUERRE MODE GENERATOR
    • INTRA-CAVITY非变性LAGUERRE模式发生器
    • US20100020833A1
    • 2010-01-28
    • US11497824
    • 2006-08-02
    • Robert D. StultzSteven C. MatthewsBillie G. Hendry
    • Robert D. StultzSteven C. MatthewsBillie G. Hendry
    • H01S3/098H01S3/10
    • H01S3/08059H01S3/061H01S3/07H01S3/08045H01S3/08072H01S3/0813H01S3/083H01S3/115H01S3/1618H01S3/1643H01S2301/20H01S2301/203
    • A lasing method including the steps of providing a laser resonator; utilizing birefringence compensation in said resonator whereby said resonator is induced to operate in a Laguerre-Gaussian higher order mode; and utilizing polarized outcoupling of lasing energy at said higher order mode from said resonator. In the illustrative application, the laser resonator is a high-power, solid-state laser resonator. In the specific embodiment, the inventive method further includes the step of changing an outcoupling preference for a non-degenerate high-order Laguerre-Gaussian mode. In one embodiment, the step of changing outcoupling preference includes the step of changing an outcoupling polarization. In another embodiment, the step of changing outcoupling preference includes the step of changing an orientation of a roof edge of a prism in the laser resonator. Lower order Laguerre modes are discouraged from appearing in an output of the resonator by adding loss at the center of the rod aperture of the resonator or detuning the orientation of a first or a second quarter-wave plate. In the illustrative embodiment, the gain lifetime of the resonator is longer than an interpulse period thereof.
    • 一种激光方法,包括提供激光谐振器的步骤; 在所述谐振器中利用双折射补偿,由此所述谐振器被诱导以拉格尔 - 高斯高阶模式工作; 并且利用来自所述谐振器的所述高阶模式的激光能量的极化输出耦合。 在说明性应用中,激光谐振器是大功率固态激光谐振器。 在具体实施例中,本发明的方法还包括改变非退化高阶Laguerre-Gaussian模式的输出偏好的步骤。 在一个实施例中,改变输出耦合偏好的步骤包括改变输出耦合极化的步骤。 在另一个实施例中,改变输出耦合偏好的步骤包括改变激光谐振器中的棱镜的顶部边缘的方向的步骤。 不希望通过在谐振器的杆孔的中心处增加损耗或使第一或第二四分之一波片的取向失谐来降低低阶Laguerre模式出现在谐振器的输出中。 在说明性实施例中,谐振器的增益寿命长于其脉冲间隔。
    • 3. 发明授权
    • Adaptive bandwidth utilization for telemetered data
    • 遥测数据的自适应带宽利用率
    • US07620068B2
    • 2009-11-17
    • US10983482
    • 2004-11-08
    • Robert D. StultzBradford L. KizzortRobert J. Knazik
    • Robert D. StultzBradford L. KizzortRobert J. Knazik
    • H04J3/16H04J3/02
    • H04J3/1682
    • A method and a system for optimizing bandwidth utilization in a communications network (100) in which a commutated bitstream (115) is transmitted. The present invention can include a commutation format definition generator (405) which processes at least one triage value (425) to automatically generate commutation format definitions (155). The triage values can represent priority levels of data elements (420) in particular system states (430) and can be used to determine data transmission rates applicable to the data elements. The system can include a data source (105) which can process the commutation format definitions to generate the commutated bitstream. The data source can select a new commutation format definition to change the format of the commutated bitstream when the system state of the data source changes and optimize the commutated bitstream for the current system state and the current available network bandwidth.
    • 一种用于优化通信网络(100)中的带宽利用率的方法和系统,其中传送换流的比特流(115)。 本发明可以包括换向格式定义生成器(405),其处理至少一个分类值(425)以自动生成换向格式定义(155)。 分类值可以表示特定系统状态(430)中的数据元素(420)的优先级,并且可以用于确定适用于数据元素的数据传输速率。 该系统可以包括数据源(105),其可处理换向格式定义以生成换向比特流。 当数据源的系统状态改变并优化当前系统状态的换流比特流和当前可用网络带宽时,数据源可以选择新的换向格式定义来改变换向比特流的格式。
    • 4. 发明授权
    • Auto-synchronization of format definitions in a commutation/de-commutation system
    • 在换向/换流系统中自动同步格式定义
    • US07529194B2
    • 2009-05-05
    • US11198058
    • 2005-08-05
    • Anthony P. GalluscioRobert J. KnazikRobert D. Stultz
    • Anthony P. GalluscioRobert J. KnazikRobert D. Stultz
    • H04L12/28
    • H04L29/06H04L1/0006H04L69/24
    • A system and a method for dynamically synchronizing a client (110) to a data source (105). The method can include the step of dynamically selecting a first length of format data to correspond to an amount of bandwidth of a commutated bitstream (115) allocated for synchronization. At least a first portion of a first format definition can be transmitted in the commutated bitstream (115). A size of the first portion can correspond to the first length of format data. The method also can include transmitting a current sentinel (205) in the commutated bitstream (115), the current sentinel (205) identifying a current commutation format of the commutated bitstream (115). An indication (120) can be received from the client that indicates that the client requires the first format definition. The step of transmitting the first portion of the first format definition can be responsive to the client indication.
    • 一种用于将客户机(110)动态地同步到数据源(105)的系统和方法。 该方法可以包括动态地选择格式数据的第一长度以对应于分配用于同步的换向比特流(115)的带宽量的步骤。 第一格式定义的至少第一部分可以在换向比特流(115)中发送。 第一部分的大小可对应于格式数据的第一长度。 该方法还可以包括在换流比特流(115)中传输电流哨兵(205),标识换流比特流(115)的当前换向格式的当前哨兵(205)。 可以从客户端接收指示客户端需要第一格式定义的指示(120)。 发送第一格式定义的第一部分的步骤可以响应于客户端指示。
    • 8. 发明授权
    • Intra-cavity non-degenerate laguerre mode generator
    • 腔内非退化Laguerre模式发生器
    • US07675958B2
    • 2010-03-09
    • US11497824
    • 2006-08-02
    • Robert D. StultzSteven C. MatthewsBillie G. Hendry
    • Robert D. StultzSteven C. MatthewsBillie G. Hendry
    • H01S3/08
    • H01S3/08059H01S3/061H01S3/07H01S3/08045H01S3/08072H01S3/0813H01S3/083H01S3/115H01S3/1618H01S3/1643H01S2301/20H01S2301/203
    • A lasing method including the steps of providing a laser resonator; utilizing birefringence compensation in said resonator whereby said resonator is induced to operate in a Laguerre-Gaussian higher order mode; and utilizing polarized outcoupling of lasing energy at said higher order mode from said resonator. In the illustrative application, the laser resonator is a high-power, solid-state laser resonator. In the specific embodiment, the inventive method further includes the step of changing an outcoupling preference for a non-degenerate high-order Laguerre-Gaussian mode. In one embodiment, the step of changing outcoupling preference includes the step of changing an outcoupling polarization. In another embodiment, the step of changing outcoupling preference includes the step of changing an orientation of a roof edge of a prism in the laser resonator. Lower order Laguerre modes are discouraged from appearing in an output of the resonator by adding loss at the center of the rod aperture of the resonator or detuning the orientation of a first or a second quarter-wave plate. In the illustrative embodiment, the gain lifetime of the resonator is longer than an interpulse period thereof.
    • 一种激光方法,包括提供激光谐振器的步骤; 在所述谐振器中利用双折射补偿,由此所述谐振器被诱导以拉格尔 - 高斯高阶模式工作; 并且利用来自所述谐振器的所述高阶模式的激光能量的极化输出耦合。 在说明性应用中,激光谐振器是大功率固态激光谐振器。 在具体实施例中,本发明的方法还包括改变非退化高阶Laguerre-Gaussian模式的输出偏好的步骤。 在一个实施例中,改变输出耦合偏好的步骤包括改变输出耦合极化的步骤。 在另一个实施例中,改变输出耦合偏好的步骤包括改变激光谐振器中的棱镜的顶部边缘的方向的步骤。 不希望通过在谐振器的杆孔的中心处增加损耗或使第一或第二四分之一波片的取向失谐来降低低阶Laguerre模式出现在谐振器的输出中。 在说明性实施例中,谐振器的增益寿命长于其脉冲间隔。