Study of low temperature matrix crystals as non-linear optical elements
Study of low temperature matrix crystals as non-linear optical elements
批准号:
05640561
负责人:
KANAMORI Hideo
金额:
$1.28万
依托单位国家:
日本
项目类别:
Grant-in-Aid for General Scientific Research (C)
财政年份:
1993
资助国家:
日本
项目状态:
已结题
起止时间:
1993 至 1994
中文摘要
利用高功率脉冲激光和谐波、和、差产生、四波混频和参量振荡等非线性光学效应,研制了宽频区的相干光源。例如,在短波长区域,BBO晶体等非线性材料可以很好地产生低至210 nm的辐射。然而,固态材料在比210 nm更短的波长内不可避免地存在自吸收现象。因此,气相中的稀有气体原子或金属蒸气交替产生较短波长的辐射。然而,由于气相密度低且缺乏相匹配条件,它们的转换效率非常小(最多10^<-6>)。为了解决低密度问题,提出了一种低温稀有气体原子矩阵作为非线性光学器件,用于产生短波辐射,并在本研究中进行了尝试。我们成功地在低温下制备了一些稀有气体原子和分子的透明晶体。利用Xe大的非线性光学特性,将其纯晶体本身用作非线性光学器件。通过检测单模YAG激光器532和355nm脉冲激光的三次谐波产生,直接研究了晶体的非线性。用单色和日盲光电倍增管检测真空紫外区的谐波。晶体表面强烈产生355nm的二阶谐波和532nm的三次谐波。另一方面,355 nm的三阶光在晶体中均匀弱生成。前者的发射可能与Xe_2外显子分子有关。从而证实了稀有气体晶体作为非线性材料存在于VUV区的可能性。
英文摘要
Coherent light sources in the wide frequency region are developed by using of high power pulse laser and non-linear optical effects like harmonics-, sum-, difference-generation, four waves mixing and parametric oscillation. In the sohrt wave length region, for example, non-linear materials like BBO crystal generates the radiation down to 210 nm in good efficiency. However, solid state materials have an inevitable self-absorption in shorter wave lenght than 210 nm. Therefore, rare gas atoms or metal vapor in the gas phase are alternated to generate the shorter wave length radiation. However their conversion efficiencies are quite small (at most 10^<-6>) because of low density and lack of phase matching condition in the gas phase.In order to remove the problem of low density, a low temperature matrix of the rare gas atom was proposed to use as a non-linear optical device for generating the shorter wave length radiation and tried in this research. We have succeeded in making transparent crystal of some rare gas atoms and molecules at low temperature. Using the large non-linear optical property of Xe, its pure crystal were used itself as a non-linear optical device. Non-linearity of the crystal was directly investigated by detecting the third order harmonic generation of pulse laser of 532 and 355 nm from a single mode YAG laser. The harmonics in the vacuum ultra-violet region were detected by a monochromater and solar-blind photomultiplier. The second order harmonics of 355 nm and the third harmonics of 532 nm were strongly generated from the surfaces of the crystal. On the other hand, the third order of 355 nm was weakly generated homogeneously in the crystal. The former emission may be related to the Xe_2 exicimer molecule. Thus we could confirm the possibility of the rare gas crystal as non-linear materials in the VUV region.
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Hideo Kajihara, Fumio Okada, Seiichiro Koda: "Multi-phtoinduced atomic nitrogen production in a low temperature nitrogen crystal." Chemical Physics. 186. 395-400 (1994)
Hideo Kajihara、Fumio Okada、Seiichiro Koda:“低温氮晶体中多光致原子氮的产生。”
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Hideo Kajihara, Tomoyuki Okamura, Fumio Okada, Seiichiro Koda: "Emission and relaxation of electronically excited O2 doped in a low temperature N2 crystal" Laser Chemistry.15. 83-92 (1995)
Hideo Kajihara、Tomoyuki Okamura、Fumio Okada、Seiichiro Koda:“低温 N2 晶体中掺杂的电子激发 O2 的发射和弛豫”Laser Chemistry.15。
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Satoshi Tanaka, Hideo Kajihara, Seiichiro Koda, V. A. Apkarian: "Observation of the Xe-S charge transfer emmision in crystal Xe doped with OCS." Chemical Physics Letters. 233. 555-558 (1995)
Satoshi Tanaka、Hideo Kajihara、Seiichiro Koda、V. A. Apkarian:“观察 OCS 掺杂晶体 Xe 中的 Xe-S 电荷转移发射。”
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Satoshi Tanaka, Hideo Kajihara, Seiichiro Koda, V.A.Apkarian: "Observation of the Xe-S charge transfer emmisionin crystal Xe doped with OCS." Chemical Physics Letters. 233. 555-558 (1995)
Satoshi Tanaka、Hideo Kajihara、Seiichiro Koda、V.A.Apkarian:“观察 OCS 掺杂的 Xe-S 电荷转移发射晶体 Xe”。
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