Matches in SemOpenAlex for { <https://semopenalex.org/work/W2995374918> ?p ?o ?g. }
- W2995374918 endingPage "91" @default.
- W2995374918 startingPage "86" @default.
- W2995374918 abstract "High-resolution gas phase spectroscopy techniques in the microwave, millimeter-wave, and terahertz spectral ranges can be used to study complex organic molecules desorbed from interstellar ice analogue surfaces with a high sensitivity. High-resolution gas phase spectroscopy gives unambiguous information about the molecular composition, the molecular structure, and transition frequencies needed for their detection by radio telescopes in various interstellar and circumstellar environments. The results will be useful not only for interpreting astronomical spectra and understanding astrophysical processes, but also for more general studies of gas-surface chemistry. This paper presents a new experimental approach based on a combination of a chirped-pulse Fourier transform microwave spectrometer detection and a low temperature surface desorption experiment. The experimental set-up is benchmarked on the desorption of ammonia ice detected by high-resolution gas phase microwave spectroscopy." @default.
- W2995374918 created "2019-12-26" @default.
- W2995374918 creator A5002624043 @default.
- W2995374918 creator A5025400572 @default.
- W2995374918 creator A5039476071 @default.
- W2995374918 creator A5048581111 @default.
- W2995374918 creator A5089065980 @default.
- W2995374918 date "2019-12-20" @default.
- W2995374918 modified "2023-10-18" @default.
- W2995374918 title "High-Resolution Gas Phase Spectroscopy of Molecules Desorbed from an Ice Surface: A Proof-of-Principle Study" @default.
- W2995374918 cites W1525170215 @default.
- W2995374918 cites W1617723769 @default.
- W2995374918 cites W1978774910 @default.
- W2995374918 cites W1983652192 @default.
- W2995374918 cites W1997815756 @default.
- W2995374918 cites W2001457679 @default.
- W2995374918 cites W2012683273 @default.
- W2995374918 cites W2017869488 @default.
- W2995374918 cites W2047842044 @default.
- W2995374918 cites W2047921941 @default.
- W2995374918 cites W2064698085 @default.
- W2995374918 cites W2066683734 @default.
- W2995374918 cites W2068592153 @default.
- W2995374918 cites W2068640310 @default.
- W2995374918 cites W2070133920 @default.
- W2995374918 cites W2079166000 @default.
- W2995374918 cites W2079568834 @default.
- W2995374918 cites W2086246772 @default.
- W2995374918 cites W2086507606 @default.
- W2995374918 cites W2096249383 @default.
- W2995374918 cites W2098684266 @default.
- W2995374918 cites W2103482848 @default.
- W2995374918 cites W2104741799 @default.
- W2995374918 cites W2184608568 @default.
- W2995374918 cites W2395868755 @default.
- W2995374918 cites W2623663205 @default.
- W2995374918 cites W2755149035 @default.
- W2995374918 cites W2901721934 @default.
- W2995374918 cites W2977030969 @default.
- W2995374918 cites W3000746797 @default.
- W2995374918 cites W3098942734 @default.
- W2995374918 cites W3099997334 @default.
- W2995374918 cites W3105279641 @default.
- W2995374918 cites W3105866347 @default.
- W2995374918 cites W3123760111 @default.
- W2995374918 cites W3124549048 @default.
- W2995374918 doi "https://doi.org/10.1021/acsearthspacechem.9b00246" @default.
- W2995374918 hasPublicationYear "2019" @default.
- W2995374918 type Work @default.
- W2995374918 sameAs 2995374918 @default.
- W2995374918 citedByCount "12" @default.
- W2995374918 countsByYear W29953749182020 @default.
- W2995374918 countsByYear W29953749182021 @default.
- W2995374918 countsByYear W29953749182022 @default.
- W2995374918 countsByYear W29953749182023 @default.
- W2995374918 crossrefType "journal-article" @default.
- W2995374918 hasAuthorship W2995374918A5002624043 @default.
- W2995374918 hasAuthorship W2995374918A5025400572 @default.
- W2995374918 hasAuthorship W2995374918A5039476071 @default.
- W2995374918 hasAuthorship W2995374918A5048581111 @default.
- W2995374918 hasAuthorship W2995374918A5089065980 @default.
- W2995374918 hasBestOaLocation W29953749182 @default.
- W2995374918 hasConcept C113196181 @default.
- W2995374918 hasConcept C121332964 @default.
- W2995374918 hasConcept C124967146 @default.
- W2995374918 hasConcept C1276947 @default.
- W2995374918 hasConcept C138268822 @default.
- W2995374918 hasConcept C147789679 @default.
- W2995374918 hasConcept C150394285 @default.
- W2995374918 hasConcept C154945302 @default.
- W2995374918 hasConcept C162711632 @default.
- W2995374918 hasConcept C185592680 @default.
- W2995374918 hasConcept C192562407 @default.
- W2995374918 hasConcept C32891209 @default.
- W2995374918 hasConcept C41008148 @default.
- W2995374918 hasConcept C41610221 @default.
- W2995374918 hasConcept C43617362 @default.
- W2995374918 hasConcept C44838205 @default.
- W2995374918 hasConcept C4839761 @default.
- W2995374918 hasConcept C62520636 @default.
- W2995374918 hasConceptScore W2995374918C113196181 @default.
- W2995374918 hasConceptScore W2995374918C121332964 @default.
- W2995374918 hasConceptScore W2995374918C124967146 @default.
- W2995374918 hasConceptScore W2995374918C1276947 @default.
- W2995374918 hasConceptScore W2995374918C138268822 @default.
- W2995374918 hasConceptScore W2995374918C147789679 @default.
- W2995374918 hasConceptScore W2995374918C150394285 @default.
- W2995374918 hasConceptScore W2995374918C154945302 @default.
- W2995374918 hasConceptScore W2995374918C162711632 @default.
- W2995374918 hasConceptScore W2995374918C185592680 @default.
- W2995374918 hasConceptScore W2995374918C192562407 @default.
- W2995374918 hasConceptScore W2995374918C32891209 @default.
- W2995374918 hasConceptScore W2995374918C41008148 @default.
- W2995374918 hasConceptScore W2995374918C41610221 @default.
- W2995374918 hasConceptScore W2995374918C43617362 @default.
- W2995374918 hasConceptScore W2995374918C44838205 @default.
- W2995374918 hasConceptScore W2995374918C4839761 @default.
- W2995374918 hasConceptScore W2995374918C62520636 @default.