Kyle N. Crabtree
University of California, Davis
55 Papers
435 Citations
Kyle N. Crabtree is an academic researcher from University of California, Davis. The author has contributed to research in topics: Rotational spectroscopy & Dissociative recombination. The author has an hindex of 21, co-authored 49 publications. Previous affiliations of Kyle N. Crabtree include Harvard University & Ball State University.
Chat about Author
Papers
Detection of e-cyanomethanimine toward sagittarius b2(n) in the green bank telescope primos survey
Daniel P. Zaleski,Nathan A. Seifert,Amanda L. Steber,Matt T. Muckle,Ryan A. Loomis,Joanna F. Corby,Oscar Martinez,Kyle N. Crabtree,Philip R. Jewell,Jan M. Hollis,Frank J. Lovas,David Vasquez,Jolie Nyiramahirwe,Nicole Sciortino,K. E. Johnson,Michael C. McCarthy,Anthony J. Remijan,Brooks H. Pate +17 more
TL;DR: The detection of E-cyanomethanimine (E-HNCHCN) toward Sagittarius B2(N) was made by comparing the publicly available Green Bank Telescope (GBT) PRIMOS survey spectra to laboratory rotational spectra from a reaction product screening experiment.
118
Detection of E-cyanomethanimine towards Sagittarius B2(N) in the Green Bank Telescope PRIMOS Survey
Daniel P. Zaleski,Nathan A. Seifert,Amanda L. Steber,Matt T. Muckle,Ryan A. Loomis,Joanna F. Corby,Oscar Martinez,Kyle N. Crabtree,Philip R. Jewell,Jan M. Hollis,Frank J. Lovas,David Vasquez,Jolie Nyiramahirwe,Nicole Sciortino,K. E. Johnson,Michael C. McCarthy,Anthony J. Remijan,Brooks H. Pate +17 more
TL;DR: The detection of E-cyanomethanimine (E-HNCHCN) towards Sagittarius B2(N) was made by comparing the publicly available Green Bank Telescope (GBT) PRIMOS survey spectra (Hollis et al. as discussed by the authors ) to laboratory rotational spectra from a reaction product screening experiment.
110
On the ortho:para ratio of h+ 3 in diffuse molecular clouds*
TL;DR: In this article, a steady-state chemical model was constructed to study the nuclear spin dependence of reactions involving H+ 3 in diffuse molecular clouds, and it was shown that the ortho:para ratio of H+3 is likely governed by a competition between dissociative recombination with electrons and thermalization via reactive collisions with H2.
On the Ortho:Para Ratio of H3+ in Diffuse Molecular Clouds
TL;DR: In this paper, a steady-state chemical model was proposed to analyze the nuclear-spindependence of reactions involving H3+ in diffuse molecular clouds, and it was shown that the ortho:para ratio of H 3+ is likely governed by a competition between dissociative recombination with electrons and thermalization via reactive collisions with H2.
75
Spontaneous and Selective Formation of HSNO, a Crucial Intermediate Linking H2S and Nitroso Chemistries
Matthew Nava,Marie-Aline Martin-Drumel,Christopher A. Lopez,Kyle N. Crabtree,Caroline C. Womack,Thanh L. Nguyen,Sven Thorwirth,Christopher C. Cummins,John F. Stanton,Michael C. McCarthy +9 more
TL;DR: It is established that HSNO is spontaneously formed in high concentration when NO and H2S gases are mixed at room temperature in the presence of metallic surfaces and the length of the S-N bond is found to be unusually long: 1.84 Å.