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    • 3. 发明申请
    • Tuning a laser
    • 调整激光
    • US20060182156A1
    • 2006-08-17
    • US11058152
    • 2005-02-15
    • Geraint OwenWilliam Trutna
    • Geraint OwenWilliam Trutna
    • H01S3/10H01S3/098
    • H01S3/1068H01S3/137H01S5/14
    • A method for synchronously tuning a laser in a laser system having a set of possible resonant frequencies including a resonating mode resonant frequency, an optical amplifier with an optical gain and a mode filter having a center frequency includes the steps of determining the optical gain of the optical amplifier and providing an optical gain signal representative of the optical gain. An apparatus for synchronously tuning a laser in a laser system has a set of possible resonant frequencies including a resonating mode resonant frequency and a mode filter having a pass band with a center frequency. The apparatus has an optical amplifier having an optical gain and a frequency shifter. The frequency shifter shifts the center frequency of the pass band in accordance with the optical gain to move the center frequency of the pass band toward the resonating mode resonant frequency.
    • 一种用于在具有包括谐振模式共振频率的一组可能谐振频率的激光系统中同步调谐激光的方法,具有光学增益的光放大器和具有中心频率的模式滤波器的方法包括以下步骤:确定 光放大器,并提供表示光增益的光增益信号。 用于在激光系统中同步调谐激光的装置具有包括谐振模式共振频率的可能谐振频率的集合和具有中心频率的通带的模式滤波器。 该装置具有具有光学增益和频率移位器的光学放大器。 频移器根据光学增益移动通带的中心频率,以使通带的中心频率朝向谐振模式谐振频率移动。
    • 4. 发明申请
    • Wavelength tunable light sources and methods of operating the same
    • 波长可调光源及其操作方法
    • US20050226557A1
    • 2005-10-13
    • US10823191
    • 2004-04-13
    • William TrutnaGeraint Owen
    • William TrutnaGeraint Owen
    • H01S3/081H01S3/083H01S3/106H01S3/137H01S5/065H01S5/10H01S5/14G02B6/26
    • H01S3/1068H01S3/083H01S3/137H01S5/065H01S5/0654H01S5/1071H01S5/141
    • Wavelength tunable light sources and methods of operating the same are described. In one aspect, a wavelength tunable light source includes a resonant light path, an optical gain medium, an optical grating, a first acousto-optic deflector, and a second acousto-optic deflector. In another aspect, a light source has a resonant light path containing first and second acousto-optic devices for tuning an output light beam over a specified frequency range with an output wavelength profile. The first acousto-optic device is driven with a first signal having a first time-varying frequency profile. The second acousto-optic device is driven with a second signal having a second time-varying frequency profile, wherein the second time-varying frequency profile differs from the first time-varying frequency profile by an amount substantially proportional to a time rate is of change of the output wavelength profile. In this way, the output light beam is tunable over the specified frequency range without observable hopping between longitudinal modes.
    • 描述了波长可调光源及其操作方法。 一方面,波长可调光源包括谐振光路,光增益介质,光栅,第一声光偏转器和第二声光偏转器。 在另一方面,光源具有包含第一和第二声光器件的谐振光路,用于利用输出波长分布调谐在特定频率范围上的输出光束。 第一声​​光装置由具有第一时变频率分布的第一信号驱动。 所述第二声光装置用具有第二时变频率分布的第二信号驱动,其中所述第二时变频率分布与所述第一时变频率分布不同,所述第一时变频率分布与时间变化大致成正比 的输出波长分布。 以这种方式,输出光束可以在指定的频率范围内调节,而不需要在纵向模式之间进行可观察的跳跃。
    • 6. 发明申请
    • Frequency-tunable light sources and methods of generating frequency-tunable light
    • 频率可调光源和产生频率可调光的方法
    • US20060050747A1
    • 2006-03-09
    • US10936113
    • 2004-09-08
    • William TrutnaGeraint Owen
    • William TrutnaGeraint Owen
    • H01S3/10
    • H01S5/141H01S3/1068H01S5/142
    • Frequency-tunable light sources and methods of generating frequency-tunable light are described. In one aspect, a frequency-tunable light source includes a resonant optical cavity, an optical gain medium, an optical mode filter, and a mode frequency tuner. The resonant optical cavity supports oscillation of light in at least one longitudinal mode having a respective mode frequency. The optical gain medium is disposed in the resonant optical cavity and is operable to amplify light. The optical mode filter is arranged to intercept light oscillating in the resonant optical cavity and has an optical transmission pass-band with a tunable center frequency. The mode frequency tuner is arranged to intercept light oscillating in the resonant optical cavity and is operable to tunably change the mode frequencies of the at least one longitudinal mode of the resonant optical cavity. In another aspect, a resonant optical cavity is provided. The resonant optical cavity supports oscillation of light in at least one longitudinal mode having a respective mode frequency. Light in at least one longitudinal mode in the resonant optical cavity is amplified. The mode frequencies of the resonant optical cavity are changed. The light is transmission band-pass filtered.
    • 描述了可调频光源和产生频率可调光的方法。 在一个方面,频率可调谐光源包括谐振光学腔,光学增益介质,光学模式滤波器和模式频率调谐器。 谐振光学腔支持具有相应模式频率的至少一个纵向模式的光的振荡。 光学增益介质设置在谐振光学腔中并可操作以放大光。 光学模式滤波器被布置成截取在谐振光学腔中振荡的光,并具有具有可调谐中心频率的光学透射通带。 模式频率调谐器被布置成截取在谐振光学腔中振荡的光并且可操作地可调谐地改变谐振光学腔的至少一个纵向模式的模式频率。 另一方面,提供了一种谐振光学腔。 谐振光学腔支持具有相应模式频率的至少一个纵向模式的光的振荡。 谐振光腔中的至少一个纵向模式的光被放大。 谐振光腔的模式频率发生变化。 光被透射带通滤波。