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    • 1. 发明授权
    • External cavity laser pivot design
    • 外腔激光枢轴设计
    • US5995521A
    • 1999-11-30
    • US79057
    • 1998-05-14
    • Bruce A. MooreDavid F. ArnoneRobert L. MacDonaldFrancis S. Luecke
    • Bruce A. MooreDavid F. ArnoneRobert L. MacDonaldFrancis S. Luecke
    • H01S3/081H01S5/022H01S5/14H01S3/10
    • H01S5/143H01S3/1055H01S5/02248
    • Disclosed are both a housing and an assembly for a tunable external cavity laser. The housing includes: a base section, a motion section, and an actuator. The base section includes a proximal and distal portion, and the laser and the dispersive element mounted at respectively the proximal and distal portions such that energy emanating from the laser strikes the dispersive element leaving the dispersive element as a second beam at an angle with respect to the first beam which depends on wavelength. The motion section includes a proximal and a distal portion and a torsional member positioned at the proximal portion and the reflector positioned at the distal portion to reflect the second beam to the laser via the dispersive element, and the motion section supported by the base about the torsional member. The actuator is in selectively engagable abutment against the distal portion of the motion section to move the reflector with respect to the dispersive element about the torsional member to tune the external cavity laser.
    • 公开了用于可调谐外腔激光器的壳体和组件。 壳体包括:基部,运动部分和致动器。 基部包括近端部分和远端部分,激光器和分散元件分别安装在近端部分和远端部分上,使得从激光器发出的能量撞击分散元件,离散分散元件作为第二光束以相对于 第一束取决于波长。 所述运动部分包括近端部分和远端部分以及定位在所述近端部分处的所述扭转部件,并且所述反射器位于所述远端部分处以经由所述色散元件将所述第二光束反射到所述激光器,并且所述运动部分由所述基部支撑, 扭转构件。 致动器选择性地可接合地抵靠运动部分的远端部分,以使反射器相对于分散元件围绕扭转部件移动以调谐外部腔体激光器。
    • 3. 发明授权
    • Precision component positioner
    • 精密元件定位器
    • US5282393A
    • 1994-02-01
    • US880438
    • 1992-05-08
    • David F. ArnoneFrancis S. Luecke
    • David F. ArnoneFrancis S. Luecke
    • G02B6/24G02B6/42G02B7/00G05G11/00
    • G02B7/004G02B6/4226Y10T74/18624Y10T74/20348Y10T74/20378
    • A precision component mounting and positioning apparatus comprises a frame member and a stage member suspended in the frame member. The frame member is adapted to be mounted on a support surface, and the stage member is adapted to receive a precision component, typically a precision optical component such as an optical fiber or waveguide. The stage member can be positionally adjusted relative to the frame member in five degrees of freedom. Three axially oriented actuators are grounded in the frame member to provide for selectively rotating the stage member about two orthogonally disposed transverse axes relative to the frame member as well as for axially translating the stage member relative to the frame member. A pair of orthogonally opposed transverse actuators are grounded in the frame member and oriented to provide for transverse translation of the stage member relative to the frame member.
    • 精密部件安装和定位装置包括框架构件和悬挂在框架构件中的平台构件。 框架构件适于安装在支撑表面上,并且台架构件适于接收精密部件,通常为诸如光纤或波导的精密光学部件。 舞台构件可以相对于框架构件以五个自由度进行位置调节。 三个轴向定向的致动器在框架构件中接地,以提供相对于框架构件围绕两个正交设置的横向轴线选择性地旋转平台构件,以及用于使平台构件相对于框架构件轴向平移。 一对正交相对的横向致动器在框架构件中接地并且被定向成提供平台构件相对于框架构件的横向平移。
    • 5. 发明授权
    • Precision component positioner
    • 精密元件定位器
    • US5400674A
    • 1995-03-28
    • US186743
    • 1994-01-25
    • David F. ArnoneFrancis S. Luecke
    • David F. ArnoneFrancis S. Luecke
    • G02B6/24G02B6/42G02B7/00G05G11/00F16H25/20
    • G02B7/004G02B6/4226Y10T74/18624Y10T74/20348Y10T74/20378
    • A precision component mounting and positioning apparatus comprises a frame member and a stage member suspended in the frame member. The frame member is adapted to be mounted on a support surface, and the stage member is adapted to receive a precision component, typically a precision optical component such as an optical fiber or waveguide. The stage member can be positionally adjusted relative to the frame member in five degrees of freedom. Three axially oriented actuators are grounded in the frame member to provide for selectively rotating the stage member about two orthogonally disposed transverse axes relative to the frame member as well as for axially translating the stage member relative to the frame member. A pair of orthogonally opposed transverse actuators are grounded in the frame member and oriented to provide for transverse translation of the stage member relative to the frame member.
    • 精密部件安装和定位装置包括框架构件和悬挂在框架构件中的平台构件。 框架构件适于安装在支撑表面上,并且台架构件适于接收精密部件,通常为诸如光纤或波导的精密光学部件。 舞台构件可以相对于框架构件以五个自由度进行位置调节。 三个轴向定向的致动器在框架构件中接地,以提供相对于框架构件围绕两个正交设置的横向轴线选择性地旋转平台构件,以及用于使平台构件相对于框架构件轴向平移。 一对正交相对的横向致动器在框架构件中接地并且被定向成提供平台构件相对于框架构件的横向平移。
    • 9. 发明授权
    • Multi-wavelength high output laser source assembly with precision output beam
    • 具有精密输出光束的多波长高输出激光源组件
    • US08565275B2
    • 2013-10-22
    • US13177332
    • 2011-07-06
    • Michael PushkarskyDavid F. Arnone
    • Michael PushkarskyDavid F. Arnone
    • H01S3/13
    • H01S5/4087B82Y20/00G02B6/4206H01S3/2383H01S5/005H01S5/0222H01S5/02248H01S5/02284H01S5/024H01S5/06216H01S5/141H01S5/3401H01S5/3402H01S5/4012H01S5/4025H01S5/4031H01S5/4075
    • A laser source assembly (210) for generating an assembly output beam (212) includes a first laser source (218A), a second laser source (218B), and a dispersive beam combiner (222). The first laser source (218A) emits a first beam (220A) having a first center wavelength, and the second laser source (218B) emits a second beam (220B) having a second center wavelength that is different than the first center wavelength. The dispersive beam combiner (222) includes a common area 224 that combines the first beam (220A) and the second beam (220B) to provide the assembly output beam (212). The first beam (220A) impinges on the common area (224) at a first beam angle (226A), and the second beam (220B) impinges on the common area (224) at a second beam angle (226B) that is different than the first beam angle (226A). Further, the beams (220A) (220B) that exit from the dispersive beam combiner (222) are substantially coaxial, are fully overlapping, and are co-propagating.
    • 用于产生组件输出光束(212)的激光源组件(210)包括第一激光源(218A),第二激光源(218B)和分散光束组合器(222)。 第一激光源(218A)发射具有第一中心波长的第一光束(220A),并且第二激光源(218B)发射具有不同于第一中心波长的第二中心波长的第二光束(220B)。 分散光束组合器(222)包括组合第一光束(220A)和第二光束(220B)以提供组装输出光束(212)的公共区域224。 第一光束(220A)以第一光束角(226A)照射在公共区域(224)上,并且第二光束(220B)以不同于第二光束的第二光束角(226B)照射在公共区域(224)上 第一光束角(226A)。 此外,从分散光束组合器(222)射出的光束(220A)(220B)基本上是同轴的,完全重叠并且共同传播。
    • 10. 发明授权
    • Compact Mid-IR laser
    • 紧凑型中红外激光
    • US07873094B2
    • 2011-01-18
    • US12354237
    • 2009-01-15
    • Timothy DayDavid F. Arnone
    • Timothy DayDavid F. Arnone
    • H01S3/08H01S3/04H01S3/30
    • H01S5/02216G02B3/00G02B7/023H01S5/005H01S5/02248H01S5/02415H01S5/02492H01S5/0427H01S5/06226H01S5/3401
    • A compact mid-IR laser device utilizes a quantum cascade laser to provide mid-IR frequencies suitable for use in molecular detection by signature absorption spectra. The compact nature of the device is obtained owing to an efficient heat transfer structure, the use of a small diameter aspheric lens and a monolithic assembly structure to hold the optical elements in a fixed position relative to one another. The compact housing size may be approximately 20 cm×20 cm×20 cm or less. Efficient heat transfer is achieved using a thermoelectric cooler TEC combined with a high thermal conductivity heat spreader onto which the quantum cascade laser is thermally coupled. The heat spreader not only serves to dissipate heat and conduct same to the TEC, but also serves as an optical platform to secure the optical elements within the housing in a fixed relationship relative on one another. A small diameter aspheric lens may have a diameter of 10 mm or less and is positioned to provided a collimated beam output from the quantum cascade laser. The housing is hermetically sealed to provide a rugged, light weight portable MIR laser source.
    • 紧凑的中红外激光装置利用量子级联激光器提供适合用于通过特征吸收光谱进行分子检测的中红外频率。 由于有效的传热结构,使用小直径非球面透镜和单片组件结构来将光学元件保持在相对于彼此的固定位置,可以获得装置的紧凑性。 紧凑的外壳尺寸可以是大约20cm×20cm×20cm或更小。 使用与量子级联激光器热耦合的高导热散热器结合的热电冷却器TEC来实现有效的热传递。 散热器不仅用于散热并将其传导到TEC,而且还用作光学平台,以将光学元件以相对于彼此的固定关系固定在壳体内。 小直径非球面透镜可以具有10mm或更小的直径,并且被定位成提供从量子级联激光器输出的准直光束。 外壳密封,提供坚固,轻便的便携式MIR激光源。