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    • 5. 发明授权
    • Flood source with pigmentless active area and visible border
    • 洪水源与无色的活动区域和可见的边界
    • US08253120B2
    • 2012-08-28
    • US12533392
    • 2009-07-31
    • Jason ShortMike PalatasL. Michael CutrerJeff Gabler
    • Jason ShortMike PalatasL. Michael CutrerJeff Gabler
    • G21G4/00
    • G21G4/06
    • Method and/or system for forming a radiation flood source. The radiation flood source includes a paper sheet, a pigmentless radioactive fill printed on the paper sheet, and a pigmented border printed on the paper sheet and around the pigmentless radioactive fill. In one embodiment the radiation flood source is formed by preparing a radioactive isotope carrier solution; loading the radioactive isotope carrier solution into a radioactive isotope carrier solution cartridge; loading a separate border cartridge into a plotter; selecting and configuring a shape of an active area; setting a border to be placed around the active area; printing the active area by utilizing the radioactive isotope carrier solution cartridge on a sheet substrate; and printing the border by utilizing the separate border cartridge on the sheet substrate.
    • 用于形成辐射源的方法和/或系统。 辐射源源包括印刷在纸张上的纸片,无颜料的放射性填充物,以及印刷在纸张上并且在无颜料的放射性填料周围的着色边界。 在一个实施例中,通过制备放射性同位素载体溶液形成辐射泛洪源; 将放射性同位素载体溶液装入放射性同位素载体溶液中; 将单独的边框装载到绘图仪中; 选择和配置活动区域的形状; 将边界设置在活动区域​​周围; 通过利用片状基材上的放射性同位素载体溶液筒印刷活性区域; 并通过利用片材基板上的分离的边框来打印边框。
    • 7. 发明授权
    • Dendrimer based terahertz generator
    • 基于Dendrimer的太赫兹发生器
    • US08050531B2
    • 2011-11-01
    • US11862474
    • 2007-09-27
    • Anis RahmanAunik K. Rahman
    • Anis RahmanAunik K. Rahman
    • G02B6/00G21G4/00
    • H01S1/02B82Y20/00G02F1/353G02F1/3558G02F1/361G02F1/3611G02F1/3612G02F1/365G02F2203/13
    • A high efficiency electro-optic dendrimer based technology for nanophotonic integrated circuit devices is presented. In particular, a high power terahertz (THz) source is implemented using an electro-optic dendrimer via electro-optic rectification. Electro-optic rectification provides inherent power scalability, because, pump-THz conversion is not limited either by emission saturation or by heat dissipation. Low dielectric loss and high electro-optic coefficient of dendrimer along with a waveguide structure provides higher output power and tunable THz power generation. A dendrimer fiber array is also disclosed by means of which the input/output signals are connected to multiple components and devices.
    • 提出了一种用于纳米光子集成电路器件的高效电光树枝状大分子技术。 特别地,通过电光校正,使用电光树枝状大分子实现高功率太赫兹(THz)源。 电光整流提供固有的功率可扩展性,因为泵 - THz转换不受发射饱和或散热的限制。 低介电损耗和树状聚合物的高电光系数以及波导结构提供更高的输出功率和可调谐的太赫兹发电。 还公开了一种树状聚合物纤维阵列,通过该树枝状聚合物纤维阵列将输入/输出信号连接到多个部件和装置。
    • 10. 发明申请
    • ACOUSTIC CRYSTAL SONOLUMINESCENT CAVITATION DEVICES AND IR/THZ SOURCES
    • 声学晶体光声器件和IR / THZ源
    • US20110001063A1
    • 2011-01-06
    • US12497367
    • 2009-07-02
    • Delmar L. BarkerWilliam R. Owens
    • Delmar L. BarkerWilliam R. Owens
    • G21G4/00
    • G21B3/00Y02E30/18
    • An acoustic crystal structure includes defect cavities that concentrate the driving pressure from applied sound waves into the cavities to cavitate gas bubbles in a liquid to produce sonoluminescence. This device may be used to study sonoluminescence or cavitation or to perform sonochemistry, nuclear fusion etc. in the cavities. A waveguide may be operatively coupled to the acoustic crystal to extract, collect and route a band of electromagnetic (EM) radiation around a specified source wavelength to an output port for emission by an antenna to provide an EM source. The waveguide may, for example, be a photonic crystal defect waveguide, a photonic crystal optical fiber or Sommerfeld waveguide. The marriage of the sonoluminescence phenomena with an acoustic crystal and embedded waveguide provides for an efficient source of narrow or broad band IR or THz radiation
    • 声学晶体结构包括将来自施加的声波的驱动压力集中到空腔中以使液体中的气泡气蚀以产生声发光的缺陷腔。 该装置可用于研究发光或空化或在空腔中进行声化学,核聚变等。 波导可以可操作地耦合到声晶体以提取,收集和布置围绕特定源波长的电磁(EM)辐射带到达输出端口,以通过天线发射以提供EM源。 波导可以例如是光子晶体缺陷波导,光子晶体光纤或Sommerfeld波导。 声发光现象与声学晶体和嵌入式波导的结合提供了一种有效的窄带或宽带IR或THz辐射源