Vacuum-UV spectroscopy of interstellar ice analogs. II. Absorption cross-sections of nonpolar ice molecules
arXiv:1405.7802 · doi:10.1051/0004-6361/201322621
Abstract
Dust grains in cold circumstellar regions and dark-cloud interiors at 10-20 K are covered by ice mantles. A nonthermal desorption mechanism is invoked to explain the presence of gas-phase molecules in these environments, such as the photodesorption induced by irradiation of ice due to secondary ultraviolet photons. To quantify the effects of ice photoprocessing, an estimate of the photon absorption in ice mantles is required. In a recent work, we reported the vacuum-ultraviolet (VUV) absorption cross sections of nonpolar molecules in the solid phase. The aim was to estimate the VUV-absorption cross sections of nonpolar molecular ice components, including CH4, CO2, N2, and O2. The column densities of the ice samples deposited at 8 K were measured in situ by infrared spectroscopy in transmittance. VUV spectra of the ice samples were collected in the 120-160 nm (10.33-7.74 eV) range using a commercial microwave-discharged hydrogen flow lamp. We found that, as expected, solid N2 has the lowest VUV-absorption cross section, which about three orders of magnitude lower than that of other species such as O2, which is also homonuclear. Methane (CH4) ice presents a high absorption near Ly-alpha (121.6 nm) and does not absorb below 148 nm. Estimating the ice absorption cross sections is essential for models of ice photoprocessing and allows estimating the ice photodesorption rates as the number of photodesorbed molecules per absorbed photon in the ice.
9 pages, 6 figures, 7 tables
References in corpus (4)
- The c2d Spitzer spectroscopic survey of ices around low-mass young stellar objects II: CO2
- Spectro-astrometric imaging of molecular gas within protoplanetary disk gaps
- Vacuum-UV spectroscopy of interstellar ice analogs. I. Absorption cross-sections of polar-ice molecules
- Subsurface chemistry of mantles of interstellar dust grains in dark molecular cores
Cited by in corpus (21)
- Photochemistry and astrochemistry: photochemical pathways to interstellar complex organic molecules
- Methanol formation via oxygen insertion chemistry in ice
- Formation of Charon's Red Poles From Seasonally Cold-Trapped Volatiles
- A three-phase approach to grain surface chemistry in protoplanetary disks: Gas, ice surfaces and ice mantles of dust grains
- Oxygen atom reactions with C2H6, C2H4, and C2H2 in ices
- The Ice Chamber for Astrophysics-Astrochemistry (ICA): A New Experimental Facility for Ion Impact Studies of Astrophysical Ice Analogues
- UV photoprocessing of NH3 ice: photon-induced desorption mechanisms
- Vacuum ultraviolet photoabsorption spectroscopy of space-related ices: Formation and destruction of solid carbonic acid upon 1~keV electron irradiation
- Density and infrared band strength of interstellar carbon monoxide (CO) ice analogues
- Formation of the simplest amide in molecular clouds: formamide (NHCHO) and its derivatives in HO-rich and CO-rich interstellar ice analogs upon VUV irradiation
- Vacuum ultraviolet photoabsorption spectroscopy of space-related ices: 1 keV electron irradiation of nitrogen- and oxygen-rich ices
- Accretion and photodesorption of CO ice as a function of the incident angle of deposition
- On The Photodesorption of CO Ice Analogues: The Formation of Atomic C in The Ice and the Effect of The VUV Emission Spectrume
- Ice mantles on dust grains: dramatic variation of thickness with grain size
- A New Method for Simulating Photoprocesses in Astrochemical Models
- CO and CO ice mixtures with N in photon energy transfer studies
- 2-aminooxazole in astrophysical environments: IR spectra and destruction cross sections for energetic processing
- Photochemistry of interstellar ice forming Complex Organic Molecules
- Ice origins of OCS and chemistry of CS2-bearing ice mantles
- Exploring refractory organics in extraterrestrial particles
- Flux and fluence effects on the Vacuum-UV photodesorption and photoprocessing of CO ices