author_facet Comes, F. J.
Elzer, A.
Speier, F.
Comes, F. J.
Elzer, A.
Speier, F.
author Comes, F. J.
Elzer, A.
Speier, F.
spellingShingle Comes, F. J.
Elzer, A.
Speier, F.
Zeitschrift für Naturforschung A
Photoionisationsuntersuchungen an Atomstrahlen
Physical and Theoretical Chemistry
General Physics and Astronomy
Mathematical Physics
author_sort comes, f. j.
spelling Comes, F. J. Elzer, A. Speier, F. 1865-7109 0932-0784 Walter de Gruyter GmbH Physical and Theoretical Chemistry General Physics and Astronomy Mathematical Physics http://dx.doi.org/10.1515/zna-1968-0118 <jats:p>The crossed beam technique is for the first time used in a mass spectrometric investigation of photoionization products. The photoionization threshold of atomic hydrogen is 911 Å and its photoionization cross section is exactly calculable. This allows the amount of ionization to be calculated, if the intensity of the radiation and the particle density are known. On the other hand, an unknown photon flux can be determined from the measured proton current. With the new technique the absolute photoelectric yield and/or the photoionization cross section of gases can be measured.</jats:p><jats:p>The experimental device consists essentially of a UV monochromator, a hydrogen atomic beam, and a mass spectrometer. By the atomic beam technique it is also possible to measure the photoionization cross section of unstable particles such as atomic oxygen and atomic nitrogen.</jats:p> Photoionisationsuntersuchungen an Atomstrahlen Zeitschrift für Naturforschung A
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title Photoionisationsuntersuchungen an Atomstrahlen
title_unstemmed Photoionisationsuntersuchungen an Atomstrahlen
title_full Photoionisationsuntersuchungen an Atomstrahlen
title_fullStr Photoionisationsuntersuchungen an Atomstrahlen
title_full_unstemmed Photoionisationsuntersuchungen an Atomstrahlen
title_short Photoionisationsuntersuchungen an Atomstrahlen
title_sort photoionisationsuntersuchungen an atomstrahlen
topic Physical and Theoretical Chemistry
General Physics and Astronomy
Mathematical Physics
url http://dx.doi.org/10.1515/zna-1968-0118
publishDate 1968
physical
description <jats:p>The crossed beam technique is for the first time used in a mass spectrometric investigation of photoionization products. The photoionization threshold of atomic hydrogen is 911 Å and its photoionization cross section is exactly calculable. This allows the amount of ionization to be calculated, if the intensity of the radiation and the particle density are known. On the other hand, an unknown photon flux can be determined from the measured proton current. With the new technique the absolute photoelectric yield and/or the photoionization cross section of gases can be measured.</jats:p><jats:p>The experimental device consists essentially of a UV monochromator, a hydrogen atomic beam, and a mass spectrometer. By the atomic beam technique it is also possible to measure the photoionization cross section of unstable particles such as atomic oxygen and atomic nitrogen.</jats:p>
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author Comes, F. J., Elzer, A., Speier, F.
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description <jats:p>The crossed beam technique is for the first time used in a mass spectrometric investigation of photoionization products. The photoionization threshold of atomic hydrogen is 911 Å and its photoionization cross section is exactly calculable. This allows the amount of ionization to be calculated, if the intensity of the radiation and the particle density are known. On the other hand, an unknown photon flux can be determined from the measured proton current. With the new technique the absolute photoelectric yield and/or the photoionization cross section of gases can be measured.</jats:p><jats:p>The experimental device consists essentially of a UV monochromator, a hydrogen atomic beam, and a mass spectrometer. By the atomic beam technique it is also possible to measure the photoionization cross section of unstable particles such as atomic oxygen and atomic nitrogen.</jats:p>
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spelling Comes, F. J. Elzer, A. Speier, F. 1865-7109 0932-0784 Walter de Gruyter GmbH Physical and Theoretical Chemistry General Physics and Astronomy Mathematical Physics http://dx.doi.org/10.1515/zna-1968-0118 <jats:p>The crossed beam technique is for the first time used in a mass spectrometric investigation of photoionization products. The photoionization threshold of atomic hydrogen is 911 Å and its photoionization cross section is exactly calculable. This allows the amount of ionization to be calculated, if the intensity of the radiation and the particle density are known. On the other hand, an unknown photon flux can be determined from the measured proton current. With the new technique the absolute photoelectric yield and/or the photoionization cross section of gases can be measured.</jats:p><jats:p>The experimental device consists essentially of a UV monochromator, a hydrogen atomic beam, and a mass spectrometer. By the atomic beam technique it is also possible to measure the photoionization cross section of unstable particles such as atomic oxygen and atomic nitrogen.</jats:p> Photoionisationsuntersuchungen an Atomstrahlen Zeitschrift für Naturforschung A
spellingShingle Comes, F. J., Elzer, A., Speier, F., Zeitschrift für Naturforschung A, Photoionisationsuntersuchungen an Atomstrahlen, Physical and Theoretical Chemistry, General Physics and Astronomy, Mathematical Physics
title Photoionisationsuntersuchungen an Atomstrahlen
title_full Photoionisationsuntersuchungen an Atomstrahlen
title_fullStr Photoionisationsuntersuchungen an Atomstrahlen
title_full_unstemmed Photoionisationsuntersuchungen an Atomstrahlen
title_short Photoionisationsuntersuchungen an Atomstrahlen
title_sort photoionisationsuntersuchungen an atomstrahlen
title_unstemmed Photoionisationsuntersuchungen an Atomstrahlen
topic Physical and Theoretical Chemistry, General Physics and Astronomy, Mathematical Physics
url http://dx.doi.org/10.1515/zna-1968-0118