CO ice photodesorption: A wavelength-dependent study
arXiv:1109.0281 · doi:10.1088/2041-8205/739/2/L36
Abstract
UV-induced photodesorption of ice is a non-thermal evaporation process that can explain the presence of cold molecular gas in a range of interstellar regions. Information on the average UV photodesorption yield of astrophysically important ices exists for broadband UV lamp experiments. UV fields around low-mass pre-main sequence stars, around shocks and in many other astrophysical environments are however often dominated by discrete atomic and molecular emission lines. It is therefore crucial to consider the wavelength dependence of photodesorption yields and mechanisms. In this work, for the first time, the wavelength-dependent photodesorption of pure CO ice is explored between 90 and 170 nm. The experiments are performed under ultra high vacuum conditions using tunable synchrotron radiation. Ice photodesorption is simultaneously probed by infrared absorption spectroscopy in reflection mode of the ice and by quadrupole mass spectrometry of the gas phase. The experimental results for CO reveal a strong wavelength dependence directly linked to the vibronic transition strengths of CO ice, implying that photodesorption is induced by electronic transition (DIET). The observed dependence on the ice absorption spectra implies relatively low photodesorption yields at 121.6 nm (Ly-alpha), where CO barely absorbs, compared to the high yields found at wavelengths coinciding with transitions into the first electronic state of CO (singulet Pi at 150 nm); the CO photodesorption rates depend strongly on the UV profiles encountered in different star formation environments.
5 pages, 2 figures, published in ApJL
References in corpus (2)
Cited by in corpus (91)
- Interstellar water chemistry: from laboratory to observations
- Gas and grain chemical composition in cold cores as predicted by the Nautilus 3-phase model
- Reactive Desorption and Radiative Association as Possible Drivers of Complex Molecule Formation in the Cold Interstellar Medium
- Astrochemistry and compositions of planetary systems
- Binding energies: new values and impact on the efficiency of chemical desorption
- Formation of Complex Molecules in Prestellar Cores: a Multilayer Approach
- H-atom addition and abstraction reactions in mixed CO, H2CO and CH3OH ices: an extended view on complex organic molecule formation
- First detection of gas-phase methanol in a protoplanetary disk
- Atom addition reactions in interstellar ice analogues
- Measuring turbulent motion in planet-forming disks with ALMA: A detection around DM Tau and non-detections around MWC 480 and V4046 Sgr
- Astrochemistry of dust, ice and gas: introduction and overview
- UV photodesorption of methanol in pure and CO-rich ices: desorption rates of the intact molecule and of the photofragments
- Multilayer formation and evaporation of deuterated ices in prestellar and protostellar cores
- Reprocessing of Ices in Turbulent Protoplanetary Disks: Carbon and Nitrogen Chemistry
- Jupiter's composition suggests its core assembled exterior to the N2 snowline
- Vacuum-UV spectroscopy of interstellar ice analogs. I. Absorption cross-sections of polar-ice molecules
- Measurement of Circumstellar Disk Sizes in the Upper Scorpius OB Association with ALMA
- Complex organic molecules in low-mass protostars on solar system scales -- I. Oxygen-bearing species
- The negligible photodesorption of methanol ice and the active photon-induced desorption of its irradiation products
- An infrared measurement of chemical desorption from interstellar ice analogues
- Indirect ultraviolet photodesorption from CO:N2 binary ices - an efficient grain-gas process
- Water ice deuteration: a tracer of the chemical history of protostars
- Wavelength-dependent UV photodesorption of pure N2 and O2 ices
- Water in Protoplanetary Disks: Deuteration and Turbulent Mixing
- Double DCO+ rings reveal CO ice desorption in the outer disk around IM Lup
- Water deuteration and ortho-to-para nuclear spin ratio of H2 in molecular clouds formed via the accumulation of HI gas
- Chemistry in Protoplanetary Disks: the gas-phase CO/H2 ratio and the Carbon reservoir
- Chemistry in Disks. IX. Observations and modeling of HCO+ and DCO+ in DM Tau
- Multiple Carbon monoxide Snow-lines in Disks Sculpted by Radial Drift
- Chemical desorption versus energy dissipation: insights from ab-initio molecular dynamics of HCO formation
- Vacuum-UV spectroscopy of interstellar ice analogs. II. Absorption cross-sections of nonpolar ice molecules
- The Distribution and Chemistry of HCO in the DM Tau Protoplanetary Disk
- Tracing extended low-velocity shocks through SiO emission - Case study of the W43-MM1 ridge
- Analytical Formulas of Molecular Ion Abundances and N2H+ Ring in Protoplanetary Disks
- The chemistry of disks around T Tauri and Herbig Ae/Be stars
- Porosity measurements of interstellar ice mixtures using optical laser interference and extended effective medium approximations
- X-ray photodesorption from water ice in protoplanetary disks and X-ray dominated regions
- Spectrally-resolved UV photodesorption of CH4 in pure and layered ices
- Dust as interstellar catalyst - II. How chemical desorption impacts the gas
- Study of the photon-induced formation and subsequent desorption of CH3 OH and H2 CO in interstellar ice analogs
- Cosmic ray sputtering yield of interstellar H2O ice mantles : Ice mantle thickness dependence
- Laboratory and Computational Studies of Interstellar Ices
- New measurements on water ice photodesorption and product formation under ultraviolet irradiation
- Methanol ice co-desorption as a mechanism to explain cold methanol in the gas-phase
- CO depletion: a microscopic perspective
- A new study of the chemical structure of the Horsehead nebula: the influence of grain-surface chemistry
- Interplay of gas and ice during cloud evolution
- How chemistry influences cloud structure, star formation, and the IMF
- UV photoprocessing of NH3 ice: photon-induced desorption mechanisms
- The ALMA Survey of 70 m Dark High-mass Clumps in Early Stages (ASHES). V. Deuterated Molecules in the 70 m dark IRDC G14.492-00.139
- Methanol Mapping in Cold Cores: Testing Model Predictions
- The efficiency of photodissociation for molecules in interstellar ices
- Surface chemistry in photodissociation regions
- The effect of selective desorption mechanisms during interstellar ice formation
- The abundance of C18O and HDO in the envelope and hot core of the intermediate mass protostar NGC 7129 FIRS 2
- Cosmic ray sputtering yield of interstellar ice mantles: CO and CO2 ice thickness dependence
- Density and infrared band strength of interstellar carbon monoxide (CO) ice analogues
- Vacuum-UV absorption spectroscopy of interstellar ice analogues. III. Isotopic effects
- Vacuum ultraviolet photoabsorption spectroscopy of space-related ices: 1 keV electron irradiation of nitrogen- and oxygen-rich ices
- H2 chemistry in interstellar ices: the case of CO ice hydrogenation in UV irradiated CO:H2 ice mixtures
- The KOSMA- PDR Model -- I. Recent updates to the numerical model of photo-dissociated regions
- Modeling chemistry during star formation: Water deuteration in dynamic star-forming regions
- Photoreactivity of condensed acetylene on Titan aerosols analogues
- Photo-desorption of H2O:CO:NH3 circumstellar ice analogs: Gas-phase enrichment
- A 3D physico-chemical model of a pre-stellar core. I. Environmental and structural impact on the distribution of CHOH and -CH
- Tracing the atomic nitrogen abundance in star-forming regions with ammonia deuteration
- Photodesorption of acetonitrile CH3CN in UV-irradiated regions of the Interstellar Medium: an experimental evidence
- Modelling the Spatial Distribution and Origin of CO Gas in Debris Disks
- Accretion and photodesorption of CO ice as a function of the incident angle of deposition
- The chemical structure of the Class 0 protostellar envelope NGC 1333 IRAS 4A
- Ice mantles on dust grains: dramatic variation of thickness with grain size
- Vacuum ultraviolet photodesorption and photofragmentation of formaldehyde-containing ices
- Modeling Nitrogen Fractionation in the Protoplanetary Disk around TW Hya: Model Constraints on Grain Population and Carbon-to-Oxygen Elemental Abundance Ratio
- Mechanism of Indirect Photon-induced Desorption at the Water Ice Surface
- X-ray induced desorption and photochemistry in CO ice
- A New Method for Simulating Photoprocesses in Astrochemical Models
- The formation of CO through consumption of gas-phase CO on vacuum-UV irradiated water ice
- CO and CO ice mixtures with N in photon energy transfer studies
- Resonant infrared irradiation of CO and CH3OH interstellar ices
- Towards detecting methanol emission in low-mass protoplanetary discs with ALMA: The role of non-LTE excitation
- The HIFI spectral survey of AFGL 2591 (CHESS). III. Chemical structure of the protostellar envelope
- Photochemistry of interstellar ice forming Complex Organic Molecules
- Simulation of CHOH ice UV photolysis under laboratory conditions
- A multigrain-multilayer astrochemical model with variable desorption energy for surface species
- Indirect X-ray photodesorption of 15N2 and 13CO from mixed and layered ices
- Cosmic-ray induced sputtering of interstellar formaldehyde ices
- Chemical constraints on the dynamical evolution of the cold core L694
- TeraHertz Desorption Emission Spectroscopy (THz DES) of space relevant ices
- Flux and fluence effects on the Vacuum-UV photodesorption and photoprocessing of CO ices
- CO desorption from interstellar icy grains induced by IR excitation of superhydrogenated PAHs
- Protoplanetary Disk Chemistry