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    • 2. 发明申请
    • CAVITY WITH DISPERSIVE ELEMENT
    • 具有分散元素的空间
    • WO2004021535A1
    • 2004-03-11
    • PCT/EP2002/009582
    • 2002-08-28
    • AGILENT TECHNOLOGIES INC.SCHWARZ, JochenSTEFFENS, WolfKALLMANN, UlrichNEBENDAHL, BerndMUELLER, Emmerich
    • SCHWARZ, JochenSTEFFENS, WolfKALLMANN, UlrichNEBENDAHL, BerndMUELLER, Emmerich
    • H01S5/14
    • H01S3/08036H01S3/08059
    • A cavity comprising: a first cavity end mirror (10) and a second cavity end mirror (20), both mirrors being arranged to at least partially reflect an incident beam (100) of electromagnetic radiation towards each other, an optical path of said beam of electromagnetic radiation within said cavity, which is defined in length ' by said first (10) and second cavity end mirror (20), a dispersive device (50), which is arranged, such that a portion of said optical path of said beam (100) of electromagnetic radiation traverses through said dispersive device (50), wherein said dispersive device (50) comprises a dispersive characteristic representing a functional dependence of an optical path length of said portion with respect to wavelength of said electromagnetic radiation, wherein said optical path length increases with an increasing wavelength of said electromagnetic radiation.
    • 一种空腔,包括:第一腔端镜(10)和第二腔端镜(20),两个镜被布置成至少部分地将电磁辐射的入射光束(100)朝向彼此反射,所述光束的光路 在所述空腔内的由所述第一(10)和第二腔端镜(20)限定的电磁辐射,分散装置(50),其被布置成使得所述光束的所述光路的一部分 (100)电磁辐射穿过所述分散装​​置(50),其中所述色散装置(50)包括表示所述部分相对于所述电磁辐射的波长的光程长度的功能依赖性的色散特性,其中所述光 路径长度随着所述电磁辐射的波长的增加而增加。
    • 4. 发明申请
    • WAVELENGTH TUNABLE RESONATOR WITH A PRISM
    • 带有PRISM的波长管谐振器
    • WO2004021530A1
    • 2004-03-11
    • PCT/EP2002/009675
    • 2002-08-30
    • AGILENT TECHNOLOGIES, INC.SCHWARZ, Jochen
    • SCHWARZ, Jochen
    • H01S3/10
    • H01S3/08004H01S3/105H01S3/106H01S3/137
    • A wavelength tunable resonator comprises a first reflector(10) for reflecting an incident beam(5) of electromagnetic radiation towards a second reflector, said second reflector(50),said second reflector(50) for reflecting said beam(5) back towards said first reflector(10), said first and second reflector defining a resonator having an optical path with a length, a gain medium(20) for generating and emitting said beam(5) towards said first and second reflector(10 50), said laser source being arranged within said resonator, a prism (40), which is arranged within said optical path, serving to filter a wavelength of said beam (5) of electromagnetic radiation and being designed to redirect a portion of said incident beam comprising said filtered wavelength towards said second reflector( 50), wherein said second reflector is arranged to be movable with respect to other optical elements within said resonator for increasing or decreasing said length of said optical path of said resonator, and wherein said prism (40) is arranged to be rotatable about an axis (110) with respect to said other optical elements within said resonator for adapting said filtered wavelength to said increase or decrease of said optical path length.
    • 波长可调谐谐振器包括用于将电磁辐射的入射光束(5)反射向第二反射器的第一反射器(10),所述第二反射器(50),所述第二反射器(50)用于将所述光束(5)反射回所述第二反射器 第一反射器(10),所述第一和第二反射器限定具有长度的光路的谐振器,用于向所述第一和第二反射器(10 50)产生并发射所述光束(5)的增益介质(20),所述激光器 源极被布置在所述谐振器内,布置在所述光路内的棱镜(40)用于滤波所述光束(5)的电磁辐射的波长,并被设计成将包括所述滤波波长的所述入射光束的一部分重定向 朝向所述第二反射器(50),其中所述第二反射器被布置成相对于所述谐振器内的其它光学元件可移动以增加或减小所述谐振器的所述光路的所述长度,以及 其中所述棱镜(40)布置成相对于所述谐振器内的所述其它光学元件可围绕轴线(110)旋转,以使所述滤波波长适应所述光程长度的增加或减小。
    • 5. 发明授权
    • WAVELENGTH TUNABLE RESONATOR WITH A PRISM
    • 用三棱镜关于波长可调谐振
    • EP1537637B1
    • 2006-11-15
    • EP02807703.0
    • 2002-08-30
    • Agilent Technologies, Inc.
    • SCHWARZ, Jochen
    • H01S3/10H01S3/08H01S3/106
    • H01S3/08004H01S3/105H01S3/106H01S3/137
    • A wavelength tunable resonator comprises a first reflector(10) for reflecting an incident beam(5) of electromagnetic radiation towards a second reflector, said second reflector(50),said second reflector(50) for reflecting said beam(5) back towards said first reflector(10), said first and second reflector defining a resonator having an optical path with a length, a gain medium(20) for generating and emitting said beam(5) towards said first and second reflector(10 50), said laser source being arranged within said resonator, a prism (40), which is arranged within said optical path, serving to filter a wavelength of said beam (5) of electromagnetic radiation and being designed to redirect a portion of said incident beam comprising said filtered wavelength towards said second reflector( 50), wherein said second reflector is arranged to be movable with respect to other optical elements within said resonator for increasing or decreasing said length of said optical path of said resonator, and wherein said prism (40) is arranged to be rotatable about an axis (110) with respect to said other optical elements within said resonator for adapting said filtered wavelength to said increase or decrease of said optical path length.
    • 6. 发明公开
    • WAVELENGTH TUNABLE RESONATOR WITH A PRISM
    • 用三棱镜关于波长可调谐振
    • EP1537637A1
    • 2005-06-08
    • EP02807703.0
    • 2002-08-30
    • Agilent Technologies, Inc.
    • SCHWARZ, Jochen
    • H01S3/10
    • H01S3/08004H01S3/105H01S3/106H01S3/137
    • A wavelength tunable resonator comprises a first reflector(10) for reflecting an incident beam(5) of electromagnetic radiation towards a second reflector, said second reflector(50),said second reflector(50) for reflecting said beam(5) back towards said first reflector(10), said first and second reflector defining a resonator having an optical path with a length, a gain medium(20) for generating and emitting said beam(5) towards said first and second reflector(10 50), said laser source being arranged within said resonator, a prism (40), which is arranged within said optical path, serving to filter a wavelength of said beam (5) of electromagnetic radiation and being designed to redirect a portion of said incident beam comprising said filtered wavelength towards said second reflector( 50), wherein said second reflector is arranged to be movable with respect to other optical elements within said resonator for increasing or decreasing said length of said optical path of said resonator, and wherein said prism (40) is arranged to be rotatable about an axis (110) with respect to said other optical elements within said resonator for adapting said filtered wavelength to said increase or decrease of said optical path length.