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    • 4. 发明申请
    • ELECTROOPTIC CHROMOPHORES WITH LARGE OPTICAL BIREFRINGENCE FOR APPLICATIONS AT HIGH SPEED AND SHORT WAVELENGTHS
    • 具有高光和短波长应用的大光学双电极的电解色素
    • WO2006055919A3
    • 2007-06-14
    • PCT/US2005042190
    • 2005-11-18
    • OPTIMER PHOTONICS INCMCGINNISS VINCENT DRISSER STEVEN MSPAHR KEVIN
    • MCGINNISS VINCENT DRISSER STEVEN MSPAHR KEVIN
    • G02B5/23
    • C07C255/58C07C205/37C07C255/30C07C255/42C07C323/21
    • Disclosed is a series of materials, which exhibit large birefringence under the influence of an applied electric field. These materials are capable of switching this large birefringence with a characteristic time on the order of 1 microsecond or less. In addition, these materials have good optical loss at this wavelength, and are stable under irradiation. These materials are suitable for fabrication of optical devices such a variable optical attenuators, switches, and modulators that respond in these time frames or slower. These materials are also suitable for use across a wide range of wavelengths. As a second component of this invention, some of these novel materials exhibit these desired optical properties (large birefringence, low loss, stability under illumination) at wavelengths as short as about 400 nm. These materials are suitable for fabrication of optical devices operating at or about 405 nm, where conventional EO materials strongly absorb and/or quickly degrade.
    • 公开了一系列在施加的电场的影响下显示出大的双折射的材料。 这些材料能够以1微秒或更小的特征时间切换这种大的双折射。 此外,这些材料在该波长处具有良好的光学损失,并且在照射下是稳定的。 这些材料适用于制造光学器件,例如在这些时间帧或更慢时间响应的可变光衰减器,开关和调制器。 这些材料也适用于广泛的波长范围。 作为本发明的第二组分,这些新型材料中的一些在短达约400nm的波长下表现出这些所需的光学性质(大的双折射,低损耗,照射下的稳定性)。 这些材料适用于制造在约405nm或约405nm下工作的光学器件,其中常规EO材料强烈吸收和/或快速降解。
    • 7. 发明申请
    • CONTROL OF TE AND TM MODES IN ELECTROOPTIC WAVEGUIDE DEVICES
    • 电光波导装置中TE和TM模式的控制
    • WO2006052865B1
    • 2006-12-07
    • PCT/US2005040243
    • 2005-11-04
    • OPTIMER PHOTONICS INCRISSER STEVEN MNIPPA DAVID WRIDGWAY RICHARD WHIGGINS RICHARD J
    • RISSER STEVEN MNIPPA DAVID WRIDGWAY RICHARD WHIGGINS RICHARD J
    • G02F1/065G02F1/01
    • G02F1/0316G02F1/0136G02F1/0353G02F1/065G02F1/225
    • An optical waveguide structure is provided wherein a controller is configured to provide a TE control voltage to a first set of control electrodes in a first electrooptic functional region and a TM control voltage to a second set of control electrodes in a second electrooptic functional region. The TE control voltage and the first electrooptic functional region are configured to alter the TE polarization mode of an optical signal propagating along the waveguide core through the first electrooptic functional region to a substantially greater extent than the TM polarization mode of the optical signal. Further, the TM control voltage and the second electrooptic functional region are configured to alter the TM polarization mode of an optical signal propagating along the waveguide core through the second electrooptic functional region to a substantially greater extent than the TE polarization mode of the optical signal. Additional embodiments and features are disclosed and claimed.
    • 提供了一种光波导结构,其中控制器被配置为向第一电光功能区域中的第一组控制电极提供TE控制电压,并在第二电光功能区域中向第二组控制电极提供TM控制电压。 TE控制电压和第一电光功能区域被配置为将通过第一电光功能区域沿着波导芯传播的光信号的TE偏振模式改变到比光信号的TM偏振模式更大的程度。 此外,TM控制电压和第二电光功能区域被配置为将通过第二电光功能区域沿着波导芯传播的光信号的TM偏振模式改变到比光信号的TE偏振模式更大的程度。 公开和要求保护附加的实施例和特征。
    • 8. 发明申请
    • CONTROL OF TE AND TM MODES IN ELECTROOPTIC WAVEGUIDE DEVICES
    • 电光波导器件中TE和TM模的控制
    • WO2006052865A3
    • 2006-10-19
    • PCT/US2005040243
    • 2005-11-04
    • OPTIMER PHOTONICS INCRISSER STEVEN MNIPPA DAVID WRIDGWAY RICHARD WHIGGINS RICHARD J
    • RISSER STEVEN MNIPPA DAVID WRIDGWAY RICHARD WHIGGINS RICHARD J
    • G02F1/065G02F1/01
    • G02F1/0316G02F1/0136G02F1/0353G02F1/065G02F1/225
    • An optical waveguide structure is provided wherein a controller is configured to provide a TE control voltage to a first set of control electrodes in a first electrooptic functional region and a TM control voltage to a second set of control electrodes in a second electrooptic functional region. The TE control voltage and the first electrooptic functional region are configured to alter the TE polarization mode of an optical signal propagating along the waveguide core through the first electrooptic functional region to a substantially greater extent than the TM polarization mode of the optical signal. Further, the TM control voltage and the second electrooptic functional region are configured to alter the TM polarization mode of an optical signal propagating along the waveguide core through the second electrooptic functional region to a substantially greater extent than the TE polarization mode of the optical signal. Additional embodiments and features are disclosed and claimed.
    • 提供了一种光波导结构,其中控制器被配置为向第一电光功能区域中的第一组控制电极提供TE控制电压并且向第二电光功能区域中的第二组控制电极提供TM控制电压。 TE控制电压和第一电光功能区被配置为将通过第一电光功能区沿着波导芯传播的光信号的TE偏振模式改变为比光信号的TM偏振模式大得多的程度。 此外,TM控制电压和第二电光功能区被配置为将通过第二电光功能区沿着波导芯传播的光学信号的TM偏振模式改变为远大于光学信号的TE偏振模式的程度。 另外的实施例和特征被公开和要求保护。