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Applying velocity constraints to the...
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Johnson, Michael W.
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Applying velocity constraints to the laser spectroscopy of deuterium-atom and chlorine-atom photodissociation products.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Applying velocity constraints to the laser spectroscopy of deuterium-atom and chlorine-atom photodissociation products./
作者:
Johnson, Michael W.
面頁冊數:
170 p.
附註:
Source: Dissertation Abstracts International, Volume: 66-03, Section: B, page: 1488.
Contained By:
Dissertation Abstracts International66-03B.
標題:
Chemistry, Physical. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3170315
ISBN:
9780542064067
Applying velocity constraints to the laser spectroscopy of deuterium-atom and chlorine-atom photodissociation products.
Johnson, Michael W.
Applying velocity constraints to the laser spectroscopy of deuterium-atom and chlorine-atom photodissociation products.
- 170 p.
Source: Dissertation Abstracts International, Volume: 66-03, Section: B, page: 1488.
Thesis (Ph.D.)--Tulane University, 2005.
The nuclear hyperfine population distributions of the deuterium atom produced in the 266 nm photolysis of DI were measured with a technique that applies spatial filtering of the nascent recoiling photoproducts to yield a reduced Doppler profile. A novel method of resonance detection for Cl atom photoproducts is also presented along with time-of-flight measurements of chlorine atoms as photoproducts from the dissociation of Cl2, thiophosgene, and phosgene. The resonance detection method permits high-resolution frequency scanning of the hyperfine structure of the chlorine atom. The results of these measurements are also presented.
ISBN: 9780542064067Subjects--Topical Terms:
560527
Chemistry, Physical.
Applying velocity constraints to the laser spectroscopy of deuterium-atom and chlorine-atom photodissociation products.
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The nuclear hyperfine population distributions of the deuterium atom produced in the 266 nm photolysis of DI were measured with a technique that applies spatial filtering of the nascent recoiling photoproducts to yield a reduced Doppler profile. A novel method of resonance detection for Cl atom photoproducts is also presented along with time-of-flight measurements of chlorine atoms as photoproducts from the dissociation of Cl2, thiophosgene, and phosgene. The resonance detection method permits high-resolution frequency scanning of the hyperfine structure of the chlorine atom. The results of these measurements are also presented.
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