Method and device for controlling a carrier-envelope phase and/or an intensity of output pulses of a pulse laser device
    113.
    发明公开
    Method and device for controlling a carrier-envelope phase and/or an intensity of output pulses of a pulse laser device 有权
    用于控制载流子壳相和/或脉冲激光装置的输出脉冲的强度的方法和装置

    公开(公告)号:EP2866311A1

    公开(公告)日:2015-04-29

    申请号:EP13005100.6

    申请日:2013-10-25

    IPC分类号: H01S3/06 H01S3/131 H01S3/0941

    摘要: A method of controlling output pulses of a pulse laser device (100) including a thin-disk laser medium (10), in particular controlling a carrier-envelope phase and/or an intensity noise of the output pulses, includes the steps of pumping the thin-disk laser medium (10) of the pulse laser device (100) with multiple pump laser diodes (21, 22, 23), which include at least one modulated laser diode (21, 22) which is powered by a current source (31, 32) with modulation capability, and controlling the output pulses by modulating the output power of the at least one modulated laser diode (21, 22), which is modulated by controlling a drive current thereof, wherein the pump laser diodes further include at least one stable laser diode (23), which has a constant output power, and the output power of the at least one modulated laser diode (21, 22) is smaller than the whole output power of the at least one stable laser diode (23). Furthermore, a pulse laser device (100), being adapted for creating output pulses, in particular having a controlled carrier-envelope phase and/or intensity noise, is described.

    摘要翻译: 一种控制包括薄盘激光介质(10)的脉冲激光装置(100)的输出脉冲的方法,特别是一种控制载波包络相位和/或所述输出脉冲的强度噪声,包括泵送所述的步骤 的脉冲激光装置(100)与多个泵浦激光二极管(21,22,23),其中包括由一个电流源供电的至少一个调制的激光二极管(21,22)的所有的薄盘激光介质(10)( 31,32)配有调制功能,以及控制通过调节所述至少一个调制的激光二极管(21,22),所有这些通过控制驱动它们的电流调制器的输出功率,worin泵激光二极管进一步包括在所述输出脉冲 至少一种稳定的激光二极管(23),其具有一个恒定的输出功率,并且所述至少一个调制的激光二极管(21,22)的输出功率大于所述至少一种稳定激光二极管的整体输出功率较小(23 )。 进一步,作为angepasst用于创建输出脉冲,特别是具有受控的载波包络相位和/或强度噪声的脉冲激光装置(100),进行说明。

    Tunable VCSEL
    114.
    发明公开
    Tunable VCSEL 审中-公开
    仿真器VCSEL

    公开(公告)号:EP2857876A1

    公开(公告)日:2015-04-08

    申请号:EP14187953.6

    申请日:2012-08-13

    摘要: Disclosed is a VCSEL (128) comprising a first and a second reflecting element separated by an optical path length to form an optical resonator cavity, a first actuator means mechanically coupled with one or both of said first and second reflecting elements, said first actuator means being configured to modulate the optical path length between said first and second reflecting elements by a modulation amplitude, and a waveguide, in particular an optical fiber, coupled with one of the reflecting elements for coupling light out of the resonator cavity, wherein the surface of at least one of the first and second reflecting elements has a concave recess (118) formed therein.

    摘要翻译: 公开了一种VCSEL(128),包括由光路长度分开以形成光学谐振腔的第一和第二反射元件,与所述第一和第二反射元件中的一个或两个机械耦合的第一致动器装置,所述第一致动器装置 被配置为通过调制幅度来调制所述第一和第二反射元件之间的光路长度,以及与用于将光耦合到谐振器腔的一个反射元件耦合的波导,特别是光纤,其中, 第一和第二反射元件中的至少一个具有形成在其中的凹形凹部(118)。

    SPATIALLY RELAYING RADIATION COMPONENTS
    119.
    发明公开
    SPATIALLY RELAYING RADIATION COMPONENTS 审中-公开
    辐射分量空间传输

    公开(公告)号:EP2697681A1

    公开(公告)日:2014-02-19

    申请号:EP12712591.2

    申请日:2012-04-05

    摘要: A method of spatially relaying a first radiation component (1) having a first wavelength and a second radiation component (2) having a second wavelength different from the first radiation component (1), using an optical relaying device (10) which comprises a transparent plate (11) having anti-reflection coatings (12, 13) on both side surfaces thereof, comprises transmitting the first radiation component (1) across the optical relaying device (10) with predetermined incident (a) and emergent angles (β), resp., wherein said anti-reflection coatings (12, 13) being effective for the first radiation component (1) at the incident and emergent angles (α, β), resp., and reflecting the second radiation component (2) at the optical relaying device (10) with a predetermined reflection angle (a) being equal to at least one of said incident and emergent angles (α, β), wherein the first and second radiation components (1, 2) are split from each other toward different directions or combined into a common beam path. Furthermore, an optical relaying device (10) and a resonator device, in particular enhancement cavity device (100) and a laser resonator, are described.