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Author: marilyn jacox
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1.
The Infrared Spectrum of HOOH+ Trapped in Solid Neon
Published: 10/12/2012
Authors: Warren Elwin Thompson, Catherine L. Lugez, Marilyn E Jacox
Abstract: When a Ne:H2O2 mixture is codeposited at 4.3 K with a beam of neon atoms that have been excited in a microwave discharge, three new, photosensitive absorptions appear which can be assigned to the three infrared-active fundamentals of trans-HOOH+. Wh
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=911738
2.
The Infrared Spectrum of NN...CO+ Trapped in Solid Neon
Published: 12/15/2011
Authors: Warren Elwin Thompson, Marilyn E Jacox
Abstract: Codeposition of a Ne:N2:CO = 200:1:1 mixture at 4.3 K with a beam of very pure neon atoms excited to their energy levels between 16.6 and 16.85 eV leads to stabilization in the resulting solid of sufficient NNCO+ for detection of its NN- and CO-stret
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=909909
3.
The Infrared Spectra of BF3+ and BF2OH+ Trapped in Solid Neon
Published: 5/20/2011
Authors: Marilyn E Jacox, Warren Elwin Thompson
Abstract: Observations on a Ne:BF3 = 400:1 mixture into which a trace of normal or isotopically enriched water had been introduced, codeposited at 4.3 K with a beam of neon atoms that had been excited in a microwave discharge, demonstrate that a pair of absorp
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=907606
4.
Photoexcitation of Free Radicals and Molecular Ions Trapped in Rare-Gas Solids.
Published: 5/2/2011
Author: Marilyn E Jacox
Abstract: The photochemical production of free radicals, molecular ions, and other highly reactive species, their trapping in rare-gas solids for studies of their vibrational and electronic spectra, and the use of secondary photolysis for product identificatio
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=904149
5.
The Infrared Spectra of C2H4+ and C2H3 Trapped in Solid Neon
Published: 2/14/2011
Authors: Marilyn E Jacox, Warren Elwin Thompson
Abstract: When a mixture of ethylene in a large excess of neon is codeposited at 4.3 K with a beam of neon atoms that have been excited in a microwave discharge, two groups of product absorptions appear in the infrared spectrum of the deposit. Similar studies
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=907297
6.
The A 2E" - X 2A2' Transition of NO^d3^ Trapped in Solid Neon
Published: 4/7/2010
Authors: Marilyn E Jacox, Warren Elwin Thompson
Abstract: NO3 has been stabilized in a neon matrix at 4.3 K in sufficient yield for detection of the absorptions between 7000 and 10000 cm-1 which arise from vibronically allowed transitions from its ground state to levels of the A 2E" state. The results conf
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=903980
7.
On Walking in the Footprints of Giants
Published: 3/1/2010
Author: Marilyn E Jacox
Abstract: This chapter tells of a lifelong fascination with light, a messenger bearing information from realms ranging from the galactic to the submicroscopic. Personal interactions have shaped and informed this life journey. Accounts of some of the most imp
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=904195
8.
Conflicting Observations Resolved by a Far IR and UV/Vis Study of the NO^d3^ Radical
Published: 5/4/2009
Authors: Helmut Beckers, Helge Willner, Marilyn E Jacox
Abstract: By codeposition of NO/Ne and O2/Ne mixtures at 6 K, weakly bound complexes between O2 and NO are formed. They exhibit a strong, structured charge transfer UV band at lambda(max) = 275 nm. The UV band disappears during UV irradiation of the neon mat
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=901529
9.
The Infrared Spectroscopy and Photochemistry of NO^d3^ Trapped in Solid Neon
Published: 11/10/2008
Authors: Marilyn E Jacox, Warren Elwin Thompson
Abstract: NO3 can be stabilized in solid neon either by codeposition at 4.3 K of a Ne:O2 mixture with a Ne:NO mixture that had been passed through a microwave discharge or, in higher yield, by codeposition of a Ne:NO mixture with a Ne:O2 mixture, followed by a
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=842473
10.
Infrared Spectra of CICN^u+^, CINC^u+^, and BrCN^u+^ Trapped in Solid Neon
Published: 6/27/2007
Authors: Marilyn E Jacox, Warren Elwin Thompson
Abstract: When a mixture of ClCN or BrCN with a large excess of neon is codeposited at 4.3 K with a beam of neon atoms that have been excited in a microwave discharge, the infrared spectrum of the resulting solid includes prominent absorptions of the uncharged
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http://www.nist.gov/manuscript-publication-search.cfm?pub_id=841083