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    • 1. 发明申请
    • INTERFEROMETRIC SOURCE OF MULTI-COLOR, MULTI-BEAM ENTAGLED PHOTONS
    • 多色多晶光源的干涉光源
    • WO03019283A3
    • 2003-09-18
    • PCT/US0226833
    • 2002-08-23
    • UT BATTELLE LLCDRESS WILLIAM BKISNER ROGER ARICHARDS ROGER K
    • DRESS WILLIAM BKISNER ROGER ARICHARDS ROGER K
    • G02B21/06G02F1/39G02F1/35
    • G02F1/39G02B21/06
    • Systems and methods are described for a quantum channel for the transmission of information. A method includes: down converting a beam of coherent energy to provide a beam of multi-color entangled photons (810); converging two spatially resolved portions of the beam of multi-color entangled photons into a converged multi-color entangled photon beam (830); changing a phase of at least a portion of the converged multi-color entangled photon beam; combining the first interferometric multi-color entangled photon beam with a second interferometric multi-color entangled photon beam within a single beam splitter 860; wherein combining includes erasing energy and momentum characteristics from both the first interferometric multi-color entangled photon beam and the second interferometric multi-color entangled photon beam; splitting the first interferometric multi-color entangled photon beam and the second interferometric multi-color entangled photon beam within the single beam splitter 860, wherein splitting yields a first output beam of multi-color entangled photons 871 and a second output beam of multi-color entangled photons 871; and modulating the first output beam of multi-color entangled photons 871.
    • 描述了用于传输信息的量子信道的系统和方法。 一种方法包括:向下转换相干能量束以提供多色纠缠光子束(810); 将多色纠缠光子束的两个空间分辨部分会聚成会聚的多色纠缠光子束(830); 改变会聚的多色纠缠光子束的至少一部分的相位; 将第一干涉多色纠缠光子束与单个分束器860内的第二干涉多色纠缠光子束组合; 其中组合包括从所述第一干涉多色纠缠光子束和所述第二干涉多色纠缠光子束中消除能量和动量特征; 将第一干涉多色纠缠光子束和第二干涉多色纠缠光子束分裂在单分束器860内,其中分离产生多色纠缠光子871的第一输出光束和多色的第二输出光束 缠结光子871; 并调制多色纠缠光子871的第一输出光束。
    • 2. 发明申请
    • INTERFEROMETRIC SOURCE OF MULTI-COLOR, MULTI-BEAM ENTANGLED PHOTONS
    • 多色多光束纠缠光子的干涉光源
    • WO03019284A3
    • 2003-05-22
    • PCT/US0226838
    • 2002-08-23
    • UT BATTELLE LLCDRESS WILLIAM BKISNER ROGER ARICHARDS ROGER K
    • DRESS WILLIAM BKISNER ROGER ARICHARDS ROGER K
    • G02B21/06G02F1/39G02F1/35
    • G02F1/39G02B21/06
    • Systems and methods are described for an interferometric source 500 of multi-color, multi-beam entangled photons. A method includes: downconverting a beam of coherent energy to provide a beam of multi-color entangled photons converging two spatially resolved portions of the beam of multi-color entangled photons into a converged multi-color entangled photon beam changing a phase of least a portion of the converged multi-color entangled photon beam to generate a first interferometric multi-color entangled photon beam and combining the first interferometric multi-color entangled photon beam with a second interferometric multi-color engtangled photon beam within a single beamsplitter 588. An apparatus includes: a multi-refringent device 900 optically coupled to a source of coherent energy 503, the multi-refringent device 900 providing a beam of multi-color entangled photons a condenser device 951, 961 optically coupled to the multi-refringent device the condenser device 951, 961 converging two spatially resolved portions of the beam of multi-color entangled photons into a converged multi-color entangled photon beam a tunable phase adjuster 747 optically coupled to the condenser device 951, 961, the tunable phase adjuster 747 changing a phase of at least a portion of the converged multi-color entangled photon beam to generate a first interferometric multi-color entangled photon beam and a beam splitter 588 optically coupled to the condenser device 951, 961, the beam splitter 588 combining the first interferometric multi-color entangled photon beam with a second interferometric multi-color entangled photon beam.
    • 描述了用于多色多束纠缠光子的干涉源500的系统和方法。 一种方法包括:下转换相干能量束以提供多色纠缠光子束,所述多色纠缠光子束将多色纠缠光子束的两个空间分辨部分会聚成聚合多色纠缠光子束,从而改变至少一部分 聚焦多色纠缠光子束产生第一干涉多色纠缠光子束并且在单个分束器588内将第一干涉多色纠缠光子束与第二干涉多色缠结光子束组合。设备包括 :光学耦合到相干能量源503的多重折射装置900,多重折射装置900提供多色纠缠光子束,光学耦合到多重折射装置的聚光装置951,961,聚光装置951 ,961将多色纠缠光子束的两个空间分辨部分会聚成会聚多色纠缠 光可调谐相位调整器747光耦合到聚光器装置951,961,可调相位调整器747改变会聚多色纠缠光子束的至少一部分的相位以产生第一干涉式多色纠缠光子 光束和光学耦合到聚光器装置951,961的分束器588,分束器588将第一干涉式多色纠缠光子束与第二干涉式多色纠缠光子束组合。
    • 3. 发明申请
    • MONOCHROMATIC REFLECTIVE SPATIAL LIGHT MODULATOR
    • 单色反光空调调光器
    • WO02084384B1
    • 2003-01-03
    • PCT/US0211316
    • 2002-04-11
    • UT BATTELLE LLC
    • SIMPSON JOHN TRICHARDS ROGER KHUTCHINSON DONALD PSIMPSON MARCUS L
    • G02F1/01H04N5/74H04N9/31
    • H04N9/3129G02F1/011G02F2201/123G02F2201/305G02F2202/107H04N5/7441
    • A reflective coherent spatial light modulator (RCSLM) includes a subwavelength resonant grating structure (SWS), the SWS including at least one subwavelength resonant grating layer (SWL) have a plurality of areas defining a plurality of pixels. Each pixel represents an area capable of individual control of its reflective response. A structure for modulating the resonant reflective response of at least one pixel is provided. The structure for modulating can include at least one electro-optic layer in optical contact with the SWS. The RCSLM is scalable in both pixel size and wavelength. A method for forming a RCSLM includes the steps of selecting a waveguide material and forming a SWS in the waveguide material, the SWS formed from at least one SWL, the SWL having a plurality of areas defining a plurality of pixels.
    • 反射相干空间光调制器(RCSLM)包括亚波长谐振光栅结构(SWS),包括至少一个亚波长谐振光栅层(SWL)的SWS具有限定多个像素的多个区域。 每个像素表示能够单独控制其反射响应的区域。 提供了用于调制至少一个像素的谐振反射响应的结构。 用于调制的结构可以包括与SWS光学接触的至少一个电光层。 RCSLM在像素大小和波长方面都是可扩展的。 用于形成RCSLM的方法包括以下步骤:在波导材料中选择波导材料并形成SWS,由至少一个SWL形成的SWS,SWL具有限定多个像素的多个区域。
    • 4. 发明申请
    • DIELECTRIC WAVEGUIDE GAS-FILLED STARK SHIFT MODULATOR
    • 电介质波导气体填充STOCK SHIFT调制器
    • WO03040822A9
    • 2004-02-05
    • PCT/US0235356
    • 2002-11-05
    • UT BATTELLE LLC
    • HUTCHINSON DONALD PRICHARDS ROGER K
    • G02F1/01G02F1/17
    • G02F1/011G02B6/032G02F1/174G02F2203/25
    • An optical modulator includes a dielectric waveguide (210) for receiving an optical beam (225) and coupling energy of the optical beam into the waveguide. At least one Stark material is provided in the waveguide. A bias circuit generates a bias signal to produce an electrical field across the Stark material to shift at least one of the Stark absorption frequencies towards the frequency of the optical beam. A circuit for producing a time varying electric field across the Stark material modulates the optical beam. The electric fields are produced between electrodes (215) provided on the outside of the waveguide. At least a portion of the bias field can be generated by an alternating bias signal, such as a square wave. A method of modulating optical signals includes the steps of providing a dielectric waveguide for receiving an optical beam and coupling energy of the optical beam into the waveguide, the waveguide having at least one Stark material disposed therein, and varying an electric field imposed across the Stark material.
    • 光学调制器包括用于接收光束(225)并将光束的能量耦合到波导中的电介质波导(210)。 在波导中提供至少一个斯塔克材料。 偏置电路产生偏置信号以在斯塔克材料之间产生电场,以将斯塔克吸收频率中的至少一个朝向光束的频率移动。 用于产生跨越斯塔克材料的时变电场的电路调制光束。 在设置在波导管外侧的电极(215)之间产生电场。 偏置场的至少一部分可以由诸如方波的交替偏置信号产生。 调制光信号的方法包括以下步骤:提供用于接收光束并将光束耦合到波导中的能量的介质波导,该波导具有设置在其中的至少一个斯塔克材料,以及改变施加在斯塔克 材料。
    • 5. 发明申请
    • MICRO-LASER
    • WO0225781A3
    • 2003-12-24
    • PCT/US0129688
    • 2001-09-21
    • UT BATTELLE LLC
    • HUTCHINSON DONALD PRICHARDS ROGER K
    • G02B6/12G02B6/122H01S3/06H01S3/063H01S3/07H01S3/08H01S3/22H01S5/10H01S5/183
    • B82Y20/00G02B6/1225G02B2006/12121H01S3/0627H01S3/0635H01S3/073H01S3/08009H01S5/105
    • A micro-laser is disclosed which includes a waveguide, a first and a second subwavelength resonant grating in the waveguide, and at least one photonic band gap resonant structure (PBG) in the waveguide and at least one amplifying medium in the waveguide. PBG features are positioned between the first and second subwavelength resonant gratings and allow introduction of amplifying mediums into the highly resonant guided micro-laser microcavity. The micro-laser may be positioned on a die of a bulk substrate material with one or more electronic and optical devices and may be communicably connected to the same. A method for fabricating a micro-laser is disclosed. A method for tuning the micro-laser is also disclosed. The micro-laser may be used as an optical regenerator, or a light source for data transfer or for optical computing.
    • 公开了一种微激光器,其包括波导中的波导,第一和第二亚波长谐振光栅以及波导中的至少一个光子带隙谐振结构(PBG)和波导中的至少一个放大介质。 PBG特征位于第一和第二亚波长谐振光栅之间,并且允许将放大介质引入高谐振引导的微激光微腔中。 微激光器可以被定位在具有一个或多个电子和光学装置的大块基板材料的管芯上,并且可以与其可通信地连接。 公开了一种制造微型激光器的方法。 还公开了一种用于调谐微激光器的方法。 微激光器可以用作光学再生器,或用于数据传输或光学计算的光源。