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    • 4. 发明申请
    • Optically Stimulated Luminescence Dosimetry Using Doped Lithium Fluoride Crystals
    • 使用掺杂的氟化锂晶体的光学刺激发光剂量学
    • US20140264045A1
    • 2014-09-18
    • US14198912
    • 2014-03-06
    • Barbara A. MarcheschiBrian L. JustusAlan L. Huston
    • Barbara A. MarcheschiBrian L. JustusAlan L. Huston
    • G01T1/115
    • G01T1/115
    • An optically stimulated luminescence (OSL) dosimeter system. An OSL reader configured to produce data indicative of a radiation exposure, one or more OSL dosimeters fabricated from a thermoluminescent material, a light stimulation source configured to stimulate the OSL dosimeter to produce luminescence emissions, and a light-detection system that measures the intensity of such luminescence emissions and converts the electrical signal to a binary string that can be processed by an appropriately programmed computer configured to analyze data from the reader and produce data indicative of an extent of radiation exposure. Dose information is obtained without requiring heating of the dosimeter. The dosimeter can be interrogated multiple times with minimal loss of dose information.
    • 光学刺激发光(OSL)剂量计系统。 OSL读取器,其被配置为产生指示辐射暴露的数据,由热发光材料制成的一个或多个OSL剂量计,被配置为刺激OSL剂量计以产生发光发射的光刺激源,以及测量所述发光强度的光检测系统 这样的发光发射并将电信号转换成二进制串,该二进制串可以由被配置为分析来自读取器的数据并产生指示辐射程度的数据的适当编程的计算机来处理。 获得剂量信息而无需加热剂量计。 剂量计可以多次询问,剂量信息损失最小。
    • 5. 发明授权
    • Closed-cell foam silica
    • 闭孔泡沫二氧化硅
    • US07788949B2
    • 2010-09-07
    • US11798976
    • 2007-05-18
    • Alan L. HustonBrian I. Justus
    • Alan L. HustonBrian I. Justus
    • C03B19/08C04B38/10
    • C03B19/08C01B33/124C03C11/007Y10T428/249969Y10T428/249977
    • A method of making a closed-cell silica foam glass is provided which can include diffusing a substance into a porous glass substrate to form an impregnated substrate, sealing the impregnated glass substrate and heating to a first temperature, wherein the pressure is greater than one atmosphere, heating the container to a second temperature, wherein the second temperature is higher than first temperature, removing the solid glass, non-porous substrate, and heating the solid glass, non-porous substrate to a third temperature to soften the solid glass, non-porous substrate and thereby expand the solid glass, non-porous substrate. A closed-cell silica foam product is provided which can have a closed-cell structure and high temperature insulating property.
    • 提供一种制造闭孔二氧化硅泡沫玻璃的方法,其可以包括将物质扩散到多孔玻璃基板中以形成浸渍的基材,密封浸渍的玻璃基板并加热至第一温度,其中压力大于一个大气压 将容器加热至第二温度,其中第二温度高于第一温度,除去固体玻璃,无孔基材,并将固体玻璃,无孔基材加热至第三温度以软化固体玻璃,非 从而膨胀固体玻璃,无孔基材。 提供了可以具有闭孔结构和高温绝缘性的闭孔硅石泡沫产品。
    • 6. 发明授权
    • Solar-blind radiation detector
    • 太阳盲辐射探测器
    • US5574286A
    • 1996-11-12
    • US497660
    • 1995-06-30
    • Alan L. HustonBrian L. Justus
    • Alan L. HustonBrian L. Justus
    • G01J1/42G01J1/58G01J3/51
    • G01J1/429G01J1/58
    • An apparatus for detecting a UV signal in the presence of background solar radiation comprises: a first filter system disposed along an optical axis being responsive to a light flux containing background solar radiation and a UV signal for passing UV light wavelengths below a selected UV wavelength and having a very sharp wavelength cutoff to substantially block wavelengths within a first selected wavelength band above the first selected UV wavelength; second and third filter systems serially disposed along the optical axis and tilted off the optical axis with respect to each other are selectively responsive to light from the first filter system for sequentially passing UV light wavelengths below the selected UV wavelength and substantially blocking visible light within the first selected wavelength band; a downconverter transforms the UV signal light from the third filter system to visible light in a second selected wavelength band; a dielectric coating disposed adjacent to the downconverter and between the third filter system and the downconverter for passing the UV signal light into the downconverter and for reflecting the visible light produced by the downconverter; a fourth filter system responsive to light from the downconverter for blocking all wavelengths greater than 700 nm that may have passed through the first, second and third filter systems and for passing therethrough the visible light in the second selected wavelength band; and a photomultiplier tube for detecting the visible light in the second selected wavelength band.
    • 一种用于在背景太阳辐射的情况下检测UV信号的装置包括:沿光轴设置的第一滤光器系统,其响应于包含背景太阳辐射的光通量和用于使UV光波长低于所选UV波长的UV信号, 具有非常清晰的波长截止以基本上阻挡在高于第一选择的UV波长的第一选定波长带内的波长; 沿着光轴串联设置并相对于光轴倾斜的第二和第三滤光器系统选择性地响应于来自第一滤光器系统的光,以顺序地通过低于所选择的UV波长的紫外光波长并且基本上阻挡在所选择的UV波长内的可见光 第一选择波段; 下变频器将来自第三滤波器系统的UV信号光转换成第二选定波长带中的可见光; 设置在下变频器附近并且位于第三滤波器系统和下变频器之间的电介质涂层,用于将UV信号光传递到下变频器中并用于反射由下变频器产生的可见光; 第四滤波器系统响应于来自下变频器的光,用于阻挡可能已经通过第一,第二和第三滤波器系统的所有波长大于700nm,并且通过第二选定波长带中的可见光; 以及用于检测第二选定波长带中的可见光的光电倍增管。
    • 7. 发明授权
    • Broadband thermal optical limiter for the protection of eyes and sensors
    • 宽带热光学限制器,用于保护眼睛和传感器
    • US5491579A
    • 1996-02-13
    • US251146
    • 1994-05-31
    • Brian L. JustusAlan L. HustonAnthony J. Campillo
    • Brian L. JustusAlan L. HustonAnthony J. Campillo
    • G02F1/01G02F1/35
    • G02F1/3523G02F1/0147
    • A broadband thermal optical limiter for protecting a light-sensitive object from intense laser beams at all near ultraviolet, visible and near infrared wavelengths is disclosed. The broadband thermal optical limiter comprises: a sample cell containing a solution of broadband absorber material dissolved in a thermal solvent; and a first optical device for converging an incident laser beam into the sample cell. The sample cell is responsive to a converged incident laser beam below a predetermined intensity level for passing therethrough the converged incident laser beam below the predetermined intensity level. The sample cell is also responsive to a converged incident laser beam at or above a predetermined intensity level for thermally defocusing substantially all of the converged incident laser beam in different directions and passing therethrough only a remaining small portion of the converged incident laser beam at or above the predetermined intensity level. The broadband thermal optical limiter further includes a second optical device for focusing substantially all of the laser beam passing through the sample cell into the light-sensitive object to be protected. A collecting aperture may be disposed in front of the second optical device for substantially blocking all light deflected by the protective element and passing therethrough into the second optical device only a small portion of the focused incident light beam at or above the predetermined intensity level.
    • 公开了一种用于在所有近紫外线,可见光和近红外波长处保护光敏物体免受强激光束的宽带热光学限制器。 宽带热光学限制器包括:样品池,其含有溶解在热溶剂中的宽带吸收材料溶液; 以及用于将入射的激光束会聚到样品池中的第一光学装置。 采样单元响应于在预定强度水平以下的会聚入射激光束,以将会聚的入射激光束通过低于预定强度水平。 样品池还响应于等于或高于预定强度水平的会聚入射激光束,用于在不同方向上基本上使所有会聚的入射激光束散焦,并且仅通过会聚入射激光束的剩余小部分在等于或高于 预定强度水平。 宽带热光学限制器还包括第二光学装置,用于将通过样品池的基本上所有的激光束聚焦到待保护的光敏物体中。 收集孔可以设置在第二光学装置的前面,用于基本上阻挡由保护元件偏转的所有光,并且在预定强度水平或高于预定强度水平的情况下仅将聚焦入射光束的一小部分穿过第二光学装置。
    • 8. 发明授权
    • Optically stimulated luminescence dosimetry using doped lithium fluoride crystals
    • 使用掺杂的氟化锂晶体进行光学刺激发光剂量测定
    • US09121948B2
    • 2015-09-01
    • US14198912
    • 2014-03-06
    • Barbara A. MarcheschiBrian L. JustusAlan L. Huston
    • Barbara A. MarcheschiBrian L. JustusAlan L. Huston
    • G01T1/115
    • G01T1/115
    • An optically stimulated luminescence (OSL) dosimeter system. An OSL reader configured to produce data indicative of a radiation exposure, one or more OSL dosimeters fabricated from a thermoluminescent material, a light stimulation source configured to stimulate the OSL dosimeter to produce luminescence emissions, and a light-detection system that measures the intensity of such luminescence emissions and converts the electrical signal to a binary string that can be processed by an appropriately programmed computer configured to analyze data from the reader and produce data indicative of an extent of radiation exposure. Dose information is obtained without requiring heating of the dosimeter. The dosimeter can be interrogated multiple times with minimal loss of dose information.
    • 光学刺激发光(OSL)剂量计系统。 OSL读取器,其被配置为产生指示辐射暴露的数据,由热发光材料制成的一个或多个OSL剂量计,被配置为刺激OSL剂量计以产生发光发射的光刺激源,以及测量所述发光强度的光检测系统 这样的发光发射并将电信号转换成二进制串,该二进制串可以由被配置为分析来自读取器的数据并产生指示辐射程度的数据的适当编程的计算机来处理。 获得剂量信息而无需加热剂量计。 剂量计可以多次询问,剂量信息损失最小。
    • 9. 发明授权
    • Marking of materials using luminescent and optically stimulable glasses
    • 使用发光和光学刺激眼镜标记材料
    • US06211526B1
    • 2001-04-03
    • US09163332
    • 1998-09-30
    • Alan L. HustonBrian L. Justus
    • Alan L. HustonBrian L. Justus
    • G03C516
    • G09F3/0291B41M1/34B41M3/144C03C4/04C03C4/12G09F3/0294
    • Objects are marked for identification by a luminescent label including an optically stimulable glass having trapping centers and luminescence centers. The objects are marked by exposing the luminescent label to a radiation flux to populate metastable trapping centers in the luminescent label. The labels are read by exposing the label to a second radiation flux of optical radiation, to stimulate the release of trapped charges, causing the label to luminesce. The labels may also be read without previously populating these metastable trapping centers, by stimulating prompt luminescence through exposure to a flux of UV radiation. The label is made from an optically stimulable glass, where this glass has a glass matrix with defects, where these defects may be: (i) an alkaline earth sulfide, activator Sm ions, and an additional coactivator dopant (Eu or Ce); (ii) ZnS and activator ions (Cu, Pb, Mn, Ce, Eu, Ag, Au, or Fe); or (iii) activator ions without metal sulfides.
    • 物体被标记为通过发光标签识别,包括具有捕获中心和发光中心的光学刺激玻璃。 通过将发光标记物暴露于辐射通量来标记物体,以填充发光标签中的亚稳态捕获中心。 通过将标签暴露于光辐射的第二辐射通量来读取标签,以刺激捕获的电荷的释放,导致标签发光。 也可以通过暴露于UV辐射通过刺激迅速的发光来读取标签,而无需预先填充这些亚稳态捕获中心。 该标签由光学刺激的玻璃制成,其中该玻璃具有缺陷的玻璃基质,其中这些缺陷可以是:(i)碱土金属硫化物,活化剂Sm离子和另外的共激活剂掺杂剂(Eu或Ce); (ii)ZnS和活化剂离子(Cu,Pb,Mn,Ce,Eu,Ag,Au或Fe); 或(iii)不含金属硫化物的活化剂离子。
    • 10. 发明授权
    • Multiple-pass reflection filter
    • 多路反射滤波器
    • US5867329A
    • 1999-02-02
    • US656535
    • 1996-05-31
    • Brian L. JustusAlan L. Huston
    • Brian L. JustusAlan L. Huston
    • G01N21/03G02B5/26G02B5/08G02B5/10G02B7/182
    • G02B5/26
    • An optical filter that uses multiple reflections to provide spectral bandpass filtering of ultraviolet, visible and infrared radiation with a very high transmission of wavelengths within a selected passband coupled with exceptional off-band rejection. The reflection filter uses dielectric-coated spherical reflectors or mirrors manufactured with absorbing glass substrates. The multiple-pass feature of the reflection filter is achieved using a traditional long-path absorption cell such as a White Cell or Wilkes Cell. The light transmitted through the reflection filter is only that light which has undergone multiple reflections as the wavelengths of high mirror reflectivity reflect off the dielectric-coated substrates. All remaining light at wavelengths corresponding to high mirror transmission is attenuated by absorption in the mirror substrate. The degree of attenuation of light at wavelengths corresponding to high mirror transmission can be chosen simply by selecting an appropriate number of reflections in the multiple-pass reflection filter.
    • 一种光学滤波器,其使用多个反射来提供紫外线,可见光和红外辐射的光谱带通滤波,其具有非常高的选定通带内的波长传输以及特殊的带外抑制。 反射滤光片使用由吸收玻璃基板制成的电介质涂覆的球形反射镜或反射镜。 反射滤光片的多通道特征使用传统的长路吸收单元如White Cell或Wilkes Cell实现。 透过反射滤光器的光仅仅是经过多次反射的光,因为高镜面反射率的波长反映在电介质涂覆的基片上。 对应于高反射镜透射的波长处的所有剩余光通过反射镜基板中的吸收而衰减。 可以简单地通过在多遍反射滤波器中选择适当数量的反射来选择对应于高反射镜传输的波长处的光的衰减程度。