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Emission Mechanism of Carbonaceous Interstellar and Circumstellar Dusts

Emission Mechanism of Carbonaceous Interstellar and Circumstellar Dusts
碳质星际和星周尘埃的发射机制
批准号:
01540217
负责人:
SAKATA Akira
金额:
$0.83万
依托单位国家:
日本
项目类别:
Grant-in-Aid for General Scientific Research (C)
财政年份:
1989
资助国家:
日本
项目状态:
已结题
起止时间:
1989 至 1990

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中文摘要
翻译
我们应该在以前的paper that oxidized f-QCC (Filmy Quenched Carbonaceous Composite)absorption features that correspond to that of the interstellar 3.3, 3.4, 6.2, 7.7, 8.6,and 11.3mum mnission features. Here we present new laboratory data showing that oxidized f-QCC,after heating to 500^゚C,has a 3.29mum absorption feature that matches precisely the wavelength of the 3.29mum interstellaremission feature. In addition,the width of the f - QCC feature is close to that of the 3.29mum emission feature observed in NGC7027, orion,和IRAS 21282+5050.实验室spectra of polycyclic hydrocarbons (PAHs)也被诊断,与comparison of the f - QCC and PAH absorption opectra to that of the 3.29mum emission featureindicates the f—QCC provides much better match. We therefore suggest that f—QCC is representative ofthe class of material giving rise to the emission features in the interstellar medium.A red excessemission were observed in 12 objects among 24反射nebula by Witt and Boroson (1990). Theemission spectra were single broad features peaked at 650-700nm with about 130nm of FWHM. Witt andBoroson attributed them to the fluorescence of hydrogenated amorphous carbon dusts. We collectedQCCs on a substrate at a temperature low than room temperature. The QCCs were mixture of lowmolecular weight chemical species such as molecules and radicals. They emit fluorescence under UVirradiation. The spectra of fluorescence of QCCs agreed well to The observed red excess emission . inorder to analyze an IR spectrum of interstellar and circumstellar dust,这是必要的方法一个典型的数学材料,我们examined一个简单method for IR emission measurement使用一个样本compartment emission accessory,made by Connecticut Instrument u.s.a. We achieved A test measurement with the accessory,and obtained a preliminary result。
英文摘要
We have shown in a previous paper that oxidized f-QCC (Filmy Quenched Carbonaceous Composite) has absorption features that correspond to that of the interstellar 3.3, 3.4, 6.2, 7.7, 8.6, and 11.3mum mnission features. Here we present new laboratory data showing that oxidized f-QCC, after heating to 500^゚C, has a 3.29 mum absorption feature that matches precisely the wavelength of the 3.29mum interstellar emission feature. In addition, the width of the fーQCC feature is close to that of the 3.29mum emission feature observed in NGC 7027, Orion, and IRAS 21282+5050. Laboratory spectra of polycyclic hydrocarbons (PAHs) were also obtained, and comparison of the fーQCC and PAH absorption opectra to that of the 3.29mum emission feature indicates the fーQCC provides much better match. We therefore suggest that fーQCC is representative of the class of material giving rise to the emission features in the interstellar medium.A red excess emission were observed in 12 objects among 24 reflection nebula by Witt and Boroson (1990). The emission spectra were single broad features peaked at 650-700nm with about 130nm of FWHM. Witt and Boroson attributed them to the fluorescence of hydrogenated amorphous carbon dusts. We collected QCCs on a substrate at a temperature lower than room temperature. The QCCs were mixture of low molecular weight chemical species such as molecules and radicals. They emit fluorescence under UV irradiation. The spectra of fluorescence of QCCs agreed well to the observed red excess emissions.In order to analyze an IR spectrum of interstellar and circumstellar dust, it is necessary to measure an emission spectrum of a candidate dust material. We examined a simple method for IR emission measurement using a sample compartment emission accessory, made by Connecticut Instrument U.S.A. We achieved a test measurement with the accessory, and obtained a preliminary result.
期刊论文(8)
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会议论文
A.Sakata, S.Wada, T.Onaka,and A.T.Tokunaga: "Quenched Carbonaceous Composite(QCC):III.Comparison to the 3.29 Micron Interstellar Emission Feature" Astrophysical Journal. 353. 543-548 (1990)
A.Sakata、S.Wada、T.Onaka 和 A.T.Tokunaga:“淬火碳质复合材料(QCC):III.与 3.29 微米星际发射特征的比较”天体物理学杂志。
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A.Sakata,S.Wada,T.Onaka,and A.T.Tokunaga: "Quenched Carbonaceous Composite(QCC):III.Comparison to the 3.29 Micron Interstellar Emission Feature" Astrophysical Journal. 353. 543-548 (1990)
A.Sakata、S.Wada、T.Onaka 和 A.T.Tokunaga:“淬火碳质复合材料(QCC):III.与 3.29 微米星际发射特征的比较”天体物理学杂志。
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坂田朗,和田節子: "宇宙の炭素-その生成、発展-" 炭素. 1989. 150-160 (1989)
Akira Sakata、Setsuko Wada:“宇宙中的碳 - 它的生成和发展” 碳。150-160 (1989)
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共 8 条
    Analysis of carbonaceous materials which show "217.5<plus-minus>2.5 nm hum
    • 批准号:
      05640305
    • 项目类别:
      Grant-in-Aid for General Scientific Research (C)
    • 资助金额:
      $1.34万
    • 财政年份:
      1993
    • 负责人:
      SAKATA Akira
    • 依托单位:
    海外基金