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    • 5. 发明授权
    • Method for connecting multicore fibers to optical devices
    • 将多芯光纤连接到光学设备的方法
    • US07845860B2
    • 2010-12-07
    • US12254490
    • 2008-10-20
    • Marco FiorentinoRaymond BeausoleilDuncan Stewart
    • Marco FiorentinoRaymond BeausoleilDuncan Stewart
    • G02B6/36G02B6/12
    • G02B6/43G02B6/02042G02B6/4249
    • A method for connecting a photonic crystal fiber having a plurality of cores connected to an optical device. An end of the photonic crystal fiber may be placed on a surface of an optical device having a plurality of coupling pads. A first core of the end of the photonic crystal fiber may be positioned over a first coupling pad on the optical device to enable a threshold amount of a coherent beam of light to propagate through the first core and first coupling pad. A second core of the end of the photonic crystal fiber is aligned to a second coupling pad on the optical device to enable a threshold amount of another coherent beam of light to propagate through the second core and second coupling pad. The end of the photonic crystal fiber may be adhered to the surface of the optical device while the position of the first and the second cores relative to the first and the second coupling pads, respectively, is maintained.
    • 一种用于连接具有连接到光学装置的多个芯的光子晶体光纤的方法。 光子晶体光纤的端部可以放置在具有多个耦合焊盘的光学器件的表面上。 光子晶体光纤的端部的第一核心可以位于光学器件上的第一耦合焊盘上方,以使阈值量的相干光束能够传播通过第一芯体和第一耦合焊盘。 光子晶体光纤的端部的第二核心与光学器件上的第二耦合焊盘对准,以使另一相干光束的阈值能够传播通过第二芯片和第二耦合焊盘。 光子晶体光纤的端部可以粘附到光学器件的表面,同时保持第一和第二芯部相对于第一和第二耦合焊盘的位置。
    • 7. 发明授权
    • Optical resonator tuning using piezoelectric actuation
    • 使用压电驱动的光谐振器调谐
    • US08983238B2
    • 2015-03-17
    • US12260016
    • 2008-10-28
    • Alexandre BratkovskiSagi MathaiDuncan Stewart
    • Alexandre BratkovskiSagi MathaiDuncan Stewart
    • G02F1/035G02B6/10G02B6/12
    • G02B6/12007
    • An optical resonator configured to be tuned using piezoelectric actuation, includes a core, the core being configured to transmit light; a piezoelectric layer; a first electrode and a second electrode. The piezoelectric layer is interposed between the first electrode and the second electrode. A voltage difference across the first and second electrodes alters a geometric dimension of the piezoelectric layer such that physical force is applied to the core and a resonant optical frequency of the resonator is changed. A method of utilizing mechanical stress to tune an optical resonator includes applying physical force to the resonator by subjecting a piezoelectric material to an electric field, the physical force changing a resonant frequency of the resonator.
    • 构造成使用压电致动调谐的光学谐振器包括芯,所述芯被配置为透射光; 压电层; 第一电极和第二电极。 压电层介于第一电极和第二电极之间。 第一和第二电极两端的电压差改变了压电层的几何尺寸,使得物理力被施加到磁芯上,并且谐振器的谐振光频率改变。 利用机械应力来调谐光学谐振器的方法包括通过使压电材料经受电场来施加物理力,所述物理力改变谐振器的谐振频率。
    • 10. 发明申请
    • Optical Resonator Tuning Using Piezoelectric Actuation
    • 使用压电驱动的光谐振器调谐
    • US20090245714A1
    • 2009-10-01
    • US12260016
    • 2008-10-28
    • Alexandre BratkovskiSagi MathaiDuncan Stewart
    • Alexandre BratkovskiSagi MathaiDuncan Stewart
    • G02F1/01G02B6/26
    • G02B6/12007
    • An optical resonator configured to be tuned using piezoelectric actuation, includes a core, the core being configured to transmit light; a piezoelectric layer; a first electrode and a second electrode. The piezoelectric layer is interposed between the first electrode and the second electrode. A voltage difference across the first and second electrodes alters a geometric dimension of the piezoelectric layer such that physical force is applied to the core and a resonant optical frequency of the resonator is changed. A method of utilizing mechanical stress to tune an optical resonator includes applying physical force to the resonator by subjecting a piezoelectric material to an electric field, the physical force changing a resonant frequency of the resonator.
    • 构造成使用压电致动调谐的光学谐振器包括芯,所述芯被配置为透射光; 压电层; 第一电极和第二电极。 压电层介于第一电极和第二电极之间。 第一和第二电极两端的电压差改变了压电层的几何尺寸,使得物理力被施加到磁芯上,并且谐振器的谐振光频率改变。 利用机械应力来调谐光学谐振器的方法包括通过使压电材料经受电场来施加物理力,所述物理力改变谐振器的谐振频率。