UF<SUB>6</SUB> Photodissociation through Measurement of Visible and Infrared Luminescence
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概要
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Infrared multiple-photon dissociation of UF<SUB>6</SUB> was induced at room temperature by irra-diation simultaneously with optically pumped CF<SUB>4</SUB> laser at 615 cm<SUP>-1</SUP> and TEA CO<SUB>2</SUB> laser at 1, 073 cm<SUP>-1</SUP>. The dissociation of UF<SUB>6</SUB> was verified from evidence of fluorine generation, ob-tained by its reduction with H<SUB>2</SUB> and observing infrared emission from the resulting excited HF molecules. The rate of UF<SUB>6</SUB> dissociation was determined from the decrease of infrared absorption shown by UF<SUB>6</SUB>. Quantitative indication of the dissociation yield of UF<SUB>6</SUB> is known to be provided by the more readily measurable visible luminescence from the irradiated zone. The intensity of the visible luminescence was therefore measured, to seek the dependence of dissociation yield on such factors as the fluences of the CF<SUB>4</SUB> and CO<SUB>2</SUB> lasers, and the pressures of UF<SUB>6</SUB> and of Ar buffer gas. A clear threshold proved to exist around 70 J/cm<SUP>2</SUP> for the fluence of CO<SUB>2</SUB> laser, but not for that of the CF<SUB>4</SUB> laser, indicating that a very slight excitation by the latter laser serves to induce UF<SUB>6</SUB> dissociation. This suggests that the dissociation energy is supplied in large part by the CO<SUB>2</SUB> laser. In the range of UF<SUB>6</SUB> dissocia-tion, the visible luminescence intensity was found to rise roughly proportionally with CF<SUB>4</SUB> and CO<SUB>2</SUB> laser fluences, as well as with the pressures of UF<SUB>6</SUB> and of added Ar buffer gas.
著者
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Namba Susumu
The Institute Of Physical And Chemical Research
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TASHIRO Hideo
The Institute of Physical and Chemical Research (RIKEN)
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TAKAMI Michio
The Institute of Physical and Chemical Research
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OYAMA Toshiyuki
The Institute of Physical and Chemical Research
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WATANABE Tsunao
The Institute of Physical and Chemical Research
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NAKANE Ryohei
The Institute of Physical and Chemical Research
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MIDORIKAWA Katsumi
The Institute of Physical and Chemical Research
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TASHIRO Hideo
The Institute of Physical and Chemical Research
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