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    • 1. 发明申请
    • MEASUREMENT DEVICE
    • 测量装置
    • WO2005055217A1
    • 2005-06-16
    • PCT/SE2004/001788
    • 2004-12-03
    • ALFA EXX ABVILHELMSSON, Kennet
    • VILHELMSSON, Kennet
    • G11B7/135
    • G01N21/255G01N21/21G01N21/55G01N2021/1795G01N2021/551
    • This invention relates to a measurement device (6), for optically measurement a property of a measurement object (12; 15; 18), the measurement device comprising a main resonator (11) having a first and a second reflecting end (1, 2) defining a cavity (7) having an effective optical cavity length, an optical gain element (3) for generating light travelling along an optical beam path between the first and second reflecting ends (1, 2), and a dispersive focusing resonator element (5) which is positioned along the optical beam path between the optical gain element (3) and the second reflecting end (2), whereby the measurement object is arranged to be at least partly positioned within the optical beam path of the main resonator, and whereby the measurement device further comprises a detection means (8) for detecting a characteristic of light emitted from the main resonator, the valve of the detected characteristic being a measure of a property of the measurement object.
    • 本发明涉及一种用于光学测量测量对象(12; 15; 18)的性质的测量装置(6),该测量装置包括具有第一和第二反射端(1,2)的主谐振器(11) )限定具有有效光腔长度的空腔(7),用于产生沿着第一和第二反射端(1,2)之间的光束路径行进的光的光学增益元件(3)和分散聚焦谐振元件( 5),其沿着光学增益元件(3)和第二反射端(2)之间的光束路径定位,由此将测量对象布置成至少部分地位于主谐振器的光束路径内,以及 由此测量装置还包括用于检测从主谐振器发射的光的特性的检测装置(8),所检测的特性的阀是测量对象的特性的量度。
    • 2. 发明申请
    • RESONATOR
    • 谐振器
    • WO2003105296A1
    • 2003-12-18
    • PCT/SE2003/000939
    • 2003-06-06
    • ALFA EXX ABVILHELMSSON, Kenneth
    • VILHELMSSON, Kenneth
    • H01S5/30
    • H01S5/142H01S3/105H01S3/106H01S5/02284H01S5/0287H01S5/1039
    • This invention relates to a wavelength tunable light source, comprising a main resonator, having a first and a second mirrored end, defining an effective cavity length, i.e. an optical beam path length of a resonant mode of the cavity, an optical gain element, having a first and second opposing end surface, said second surface being positioned within said main resonator, a mirror element constituting said second mirrored end, and a dispersive focusing resonator element, being positioned along a beam path between said second end surface and said mirror element, whereby said effective cavity length of said main resonator is arranged to be varied.
    • 波长可调谐光源本发明涉及一种波长可调谐光源,其包括具有第一和第二镜像端的主谐振器,其限定有效腔长度,即腔的谐振模式的光束路径长度,光增益元件,具有 第一和第二相对的端面,所述第二表面位于所述主谐振器内,构成所述第二镜像端的反射镜元件和沿所述第二端面和所述镜元件之间的光束路径定位的色散聚焦谐振元件, 由此所述主谐振器的所述有效腔长度被布置成变化。
    • 4. 发明授权
    • RESONATOR
    • 谐振器
    • EP1509980B1
    • 2008-12-10
    • EP03738818.8
    • 2003-06-06
    • Alfa Exx AB
    • VILHELMSSON, Kenneth
    • H01S5/30
    • H01S5/142H01S3/105H01S3/106H01S5/02284H01S5/0287H01S5/1039
    • This invention relates to a wavelength tunable light source, comprising a main resonator, having a first and a second mirrored end, defining an effective cavity length, i.e. an optical beam path length of a resonant mode of the cavity, an optical gain element, having a first and second opposing end surface, said second surface being positioned within said main resonator, a mirror element constituting said second mirrored end, and a dispersive focusing resonator element, being positioned along a beam path between said second end surface and said mirror element, whereby said effective cavity length of said main resonator is arranged to be varied.
    • 波长可调光源技术领域本发明涉及一种波长可调光源,其包括具有第一和第二镜像端的主谐振器,其限定了有效谐振腔长度,即腔的谐振模的光束路径长度,光学增益元件, 所述第二表面位于所述主谐振器内,构成所述第二镜像端的镜元件和位于所述第二端表面和所述镜元件之间的光束路径上的色散聚焦谐振器元件, 由此所述主谐振器的所述有效谐振腔长度被布置为变化。
    • 5. 发明公开
    • MEASUREMENT DEVICE
    • 测量装置
    • EP1690254A1
    • 2006-08-16
    • EP04801705.7
    • 2004-12-03
    • Alfa Exx AB
    • VILHELMSSON, Kennet
    • G11B7/135
    • G01N21/255G01N21/21G01N21/55G01N2021/1795G01N2021/551
    • This invention relates to a measurement device (6), for optically measurement a property of a measurement object (12; 15; 18), the measurement device comprising a main resonator (11) having a first and a second reflecting end (1, 2) defining a cavity (7) having an effective optical cavity length, an optical gain element (3) for generating light travelling along an optical beam path between the first and second reflecting ends (1, 2), and a dispersive focusing resonator element (5) which is positioned along the optical beam path between the optical gain element (3) and the second reflecting end (2), whereby the measurement object is arranged to be at least partly positioned within the optical beam path of the main resonator, and whereby the measurement device further comprises a detection means (8) for detecting a characteristic of light emitted from the main resonator, the valve of the detected characteristic being a measure of a property of the measurement object.
    • 本发明涉及用于光学地测量测量对象(12; 15; 18)的特性的测量装置(6),该测量装置包括具有第一和第二反射端(1,2; )限定具有有效光腔长度的空腔(7),用于产生沿着第一和第二反射端(1,2)之间的光束路径行进的光的光学增益元件(3),以及色散聚焦谐振器元件( 5),其沿着光学增益元件(3)和第二反射端(2)之间的光束路径定位,由此测量对象被布置为至少部分地位于主谐振器的光束路径内;以及 由此所述测量装置还包括用于检测从所述主谐振器发射的光的特性的检测装置(8),所述检测到的特性的所述阀是所述测量对象的特性的量度。
    • 9. 发明专利
    • SE0303263D0
    • 2003-12-05
    • SE0303263
    • 2003-12-05
    • ALFA EXX AB
    • VILHELMSSON KENNETH
    • G01B20060101G01N21/21G01N21/25G01N21/55G11B7/135G01B
    • This invention relates to a measurement device, for optically measuring a property of a measurement object, the measurement device comprising a main resonator having a first and a second reflecting end defining a cavity having an effective optical cavity length, an optical gain element for generating light travelling along an optical beam path between the first and second reflecting ends, and a dispersive focusing resonator element which is positioned along the optical beam path between the optical gain element and the second reflecting end, whereby the measurement object is arranged to be at least partly positioned within the optical beam path of the main resonator, and whereby the measurement device further comprises a detection means for detecting a characteristic of light emitted from the main resonator, the value of the detected characteristic being a measure of a property of the measurement object.