发明申请
US20070127107A1 Wavelength conversion element having multi-gratings and light generating apparatus using said element, and wavelength conversion element having cylindrical ferroelectric single crystals and light generating apparatus using said element
失效
具有多光栅的波长转换元件和使用所述元件的发光装置,以及具有圆柱形铁电单晶体的波长转换元件和使用所述元件的发光装置
- 专利标题: Wavelength conversion element having multi-gratings and light generating apparatus using said element, and wavelength conversion element having cylindrical ferroelectric single crystals and light generating apparatus using said element
- 专利标题(中): 具有多光栅的波长转换元件和使用所述元件的发光装置,以及具有圆柱形铁电单晶体的波长转换元件和使用所述元件的发光装置
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申请号: US10575535申请日: 2004-11-19
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公开(公告)号: US20070127107A1公开(公告)日: 2007-06-07
- 发明人: Kenji Kitamura , Sunao Kurimura , Masaru Nakamura , Shunji Takekawa
- 申请人: Kenji Kitamura , Sunao Kurimura , Masaru Nakamura , Shunji Takekawa
- 申请人地址: JP Tsukuba-shi 305-0047
- 专利权人: National Institute for Materials Science
- 当前专利权人: National Institute for Materials Science
- 当前专利权人地址: JP Tsukuba-shi 305-0047
- 优先权: JP2003-391241 20031120; JP2003-391242 20031120
- 国际申请: PCT/JP04/17653 WO 20041119
- 主分类号: G02B26/00
- IPC分类号: G02B26/00 ; G02F1/00 ; G02F1/01
摘要:
A wavelength conversion element having multi-gratings free from damage propagation and a light generating apparatus using it, and a wavelength conversion element having multi-gratings to make a thermal distribution centrosymmetric, and being free from damage propagation, are provided. The wavelength conversion element is realized by comprising a holder and plural prismatic ferroelectric single crystals disposed in the holder, wherein plural prismatic ferroelectric single crystals have at least five planes; the aspect ratios of planes perpendicular to respective longitudinal directions of the plural prismatic ferroelectric single crystals are virtually unity; and each of the plural prismatic ferroelectric single crystals has a domain inversion structure with a predetermined period in the direction perpendicular to the polarization direction thereof, and is arranged in a way that said direction perpendicular to the polarization direction is the same as those of the other crystals. In addition, the element is realized by selecting ferroelectric material from a group comprising lithium niobate, lithium tantalate, impurity-doped lithium niobate, and impurity-doped lithium tantalate, each with virtually stoichiometric composition, and processing it into the cylindrical ferroelectric single crystal with a virtually completely round cross-section.
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