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    • 11. 发明授权
    • Systems, devices and methods for tuning a resonant wavelength of an optical resonator and dispersion properties of a photonic crystal waveguide
    • 用于调谐光谐振器的谐振波长和光子晶体波导的色散特性的系统,装置和方法
    • US08705898B2
    • 2014-04-22
    • US12664627
    • 2008-06-16
    • Chee Wei WongXiaodong YangCharlton ChenChad Husko
    • Chee Wei WongXiaodong YangCharlton ChenChad Husko
    • G02F1/01G02B6/26G02B6/42
    • G02B6/1225B82Y20/00G02B6/12007
    • Some embodiments of the disclosed subject matter provide systems, devices, and methods for tuning resonant wavelengths of an optical resonator. Some embodiments of the disclosed subject matter provide systems, devices, and methods for tuning dispersion properties of photonic crystal waveguides. In some embodiments, methods for tuning a resonant wavelength of an optical resonator are provided, the methods including: providing an optical resonator having a surface; determining an initial resonant wavelength emitted by the optical resonator in response to an electromagnetic radiation input; determining a number of layers of dielectric material based on a difference between the initial resonant wavelength and a target resonant wavelength and a predetermined tuning characteristic; and applying the determined number of layers of dielectric material to the surface of the optical resonator to tune the initial resonant wavelength to a tuned resonant wavelength.
    • 所公开的主题的一些实施例提供用于调谐光学谐振器的谐振波长的系统,装置和方法。 所公开的主题的一些实施例提供用于调整光子晶体波导的色散性质的系统,装置和方法。 在一些实施例中,提供了用于调谐光学谐振器的谐振波长的方法,所述方法包括:提供具有表面的光学谐振器; 确定响应于电磁辐射输入由光谐振器发射的初始谐振波长; 基于初始谐振波长和目标谐振波长之间的差异以及预定的调谐特性来确定介电材料层数; 以及将确定数量的介电材料层施加到光学谐振器的表面以将初始谐振波长调谐到调谐谐振波长。
    • 12. 发明授权
    • All-silicon raman amplifiers and lasers based on micro ring resonators
    • 全硅拉曼放大器和基于微环谐振器的激光器
    • US08017419B2
    • 2011-09-13
    • US12392634
    • 2009-02-25
    • Xiaodong YangChee Wei Wong
    • Xiaodong YangChee Wei Wong
    • H01L21/00H01S3/083
    • H01S3/0632H01S3/083H01S3/094096H01S3/1628H01S3/2308H01S3/30
    • Methods of manufacturing a lasing device are provided by some embodiments, the methods including: creating a silicon micro ring with a predetermined radius and a predetermined first cross-sectional dimension; creating a silicon waveguide with a predetermined second cross-sectional dimension, the silicon waveguide spaced from the silicon micro ring by a predetermined distance; and wherein the predetermined distance, the predetermined radius, the predetermined first cross-sectional dimension, and the predetermined second cross-sectional dimension are determined so that at least one first whispering gallery mode resonant frequency of the silicon micro ring and at least one second whispering gallery mode resonant frequency of the silicon micro ring are separated by an optical phonon frequency of silicon.
    • 通过一些实施例提供了制造激光装置的方法,所述方法包括:产生具有预定半径和预定第一横截面尺寸的硅微环; 产生具有预定第二横截面尺寸的硅波导,所述硅波导与所述硅微环间隔预定距离; 并且其中确定预定距离,预定半径,预定的第一横截面尺寸和预定的第二横截面尺寸,使得硅微环的至少一个第一耳语模式共振频率和至少一个第二耳语 硅微环的画廊模式谐振频率由硅的光学声子频率分离。
    • 14. 发明申请
    • SYSTEMS, DEVICES AND METHODS FOR TUNING A RESONANT WAVELENGTH OF AN OPTICAL RESONATOR AND DISPERSION PROPERTIES OF A PHOTONIC CRYSTAL WAVEGUIDE
    • 用于调谐光学谐振器的共振波长和光子晶体波形的分散特性的系统,装置和方法
    • US20100270481A1
    • 2010-10-28
    • US12664627
    • 2008-06-16
    • Chee Wei WongXiaodong YangCharlton ChenChad Husko
    • Chee Wei WongXiaodong YangCharlton ChenChad Husko
    • G21K5/02G02B6/10B05D5/06
    • G02B6/1225B82Y20/00G02B6/12007
    • Some embodiments of the disclosed subject matter provide systems, devices, and methods for tuning resonant wavelengths of an optical resonator. Some embodiments of the disclosed subject matter provide systems, devices, and methods for tuning dispersion properties of photonic crystal waveguides. In some embodiments, methods for tuning a resonant wavelength of an optical resonator are provided, the methods including: providing an optical resonator having a surface; determining an initial resonant wavelength emitted by the optical resonator in response to an electromagnetic radiation input; determining a number of layers of dielectric material based on a difference between the initial resonant wavelength and a target resonant wavelength and a predetermined tuning characteristic; and applying the determined number of layers of dielectric material to the surface of the optical resonator to tune the initial resonant wavelength to a tuned resonant wavelength.
    • 所公开的主题的一些实施例提供用于调谐光学谐振器的谐振波长的系统,装置和方法。 所公开的主题的一些实施例提供用于调整光子晶体波导的色散性质的系统,装置和方法。 在一些实施例中,提供了用于调谐光学谐振器的谐振波长的方法,所述方法包括:提供具有表面的光学谐振器; 确定响应于电磁辐射输入由光谐振器发射的初始谐振波长; 基于初始谐振波长和目标谐振波长之间的差异以及预定的调谐特性来确定介电材料层数; 以及将确定数量的介电材料层施加到光学谐振器的表面以将初始谐振波长调谐到调谐谐振波长。
    • 16. 发明申请
    • ALL-SILICON RAMAN AMPLIFIERS AND LASERS BASED ON MICRO RING RESONATORS
    • 基于微环谐振器的全硅拉曼放大器和激光器
    • US20090191657A1
    • 2009-07-30
    • US12392634
    • 2009-02-25
    • Xiaodong YangChee Wei Wong
    • Xiaodong YangChee Wei Wong
    • H01L21/00
    • H01S3/0632H01S3/083H01S3/094096H01S3/1628H01S3/2308H01S3/30
    • Methods of manufacturing a lasing device are provided by some embodiments, the methods including: creating a silicon micro ring with a predetermined radius and a predetermined first cross-sectional dimension; creating a silicon waveguide with a predetermined second cross-sectional dimension, the silicon waveguide spaced from the silicon micro ring by a predetermined distance; and wherein the predetermined distance, the predetermined radius, the predetermined first cross-sectional dimension, and the predetermined second cross-sectional dimension are determined so that at least one first whispering gallery mode resonant frequency of the silicon micro ring and at least one second whispering gallery mode resonant frequency of the silicon micro ring are separated by an optical phonon frequency of silicon.
    • 通过一些实施例提供了制造激光装置的方法,所述方法包括:产生具有预定半径和预定第一横截面尺寸的硅微环; 产生具有预定第二横截面尺寸的硅波导,所述硅波导与所述硅微环间隔预定距离; 并且其中确定预定距离,预定半径,预定的第一横截面尺寸和预定的第二横截面尺寸,使得硅微环的至少一个第一耳语模式共振频率和至少一个第二耳语 硅微环的画廊模式谐振频率由硅的光学声子频率分离。