NAME Tamura 8 , the SIMBAD biblio

NAME Tamura 8 , the SIMBAD biblio (21 results) C.D.S. - SIMBAD4 rel 1.7 - 2021.03.06CET00:06:01


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Title First 3 Authors
2018MNRAS.478.2753K 17       D               4 61 1 The efficiency of photodissociation for molecules in interstellar ices. KALVANS J.
2017ApJ...838...66L 613       D     X C       14 23 1 H2, CO, and dust absorption through cold molecular clouds. LACY J.H., SNEDEN C., KIM H., et al.
2015ApJ...803...52K 16       D               1 12 7 The effect of selective desorption mechanisms during interstellar ice formation. KALVANS J.
2010ApJS..186..259R viz 16       D               2 507 176 The Taurus Spitzer survey: new candidate Taurus members selected using sensitive mid-infrared photometry. REBULL L.M., PADGETT D.L., McCABE C.-E., et al.
2009ApJ...693L..81M viz 15       D               1 40 68 Observational 5-20 µm interstellar extinction curves toward star-forming regions derived from Spitzer IRS spectra. McCLURE M.
2008ApJ...674..304W 113 67 The efficiency of grain alignment in dense interstellar clouds: a reassessment of constraints from near-infrared polarization. WHITTET D.C.B., HOUGH J.H., LAZARIAN A., et al.
2007ApJ...655..332W 2 17 83 The abundance of carbon dioxide ice in the quiescent intracloud medium. WHITTET D.C.B., SHENOY S.S., BERGIN E.A., et al.
2000ApJS..128..603M 15       D               1 70 47 1-4 micron spectrophotometry of dust in the Taurus dark cloud: water ice distribution in Heiles cloud 2. MURAKAWA K., TAMURA M. and NAGATA T.
1999A&A...342L..32D 2 23 146 Methanol: The second most abundant ice species towards the high-mass protostars RAFGL 7009S and W 33A. DARTOIS E., SCHUTTE W., GEBALLE T.R., et al.
1999A&A...351..292T 49 40 Ices and extinction through the Taurus and Ophiuchus clouds. TEIXEIRA T.C. and EMERSON J.P.
1999A&A...351..303T 48 13 Determining the extinction through dark clouds. TEIXEIRA T.C. and EMERSON J.P.
1997ApJ...479..818E 1 17 68 The 2140 cm–1 (4.673 micron) solid CO band: the case for interstellar O2 and N2 and the photochemistry of nonpolar interstellar ice analogs. ELSILA J., ALLAMANDOLA L.J. and SANDFORD S.A.
1996ApJ...472..665C 1 19 95 Three micron hydrocarbon and methanol absorption in Taurus. CHIAR J.E., ADAMSON A.J. and WHITTET D.C.B.
1995ApJ...455..234C 1 46 159 High-resolution studies of solid CO in the Taurus Dark Cloud: characterizing the ices in quiescent clouds. CHIAR J.E., ADAMSON A.J., KERR T.H., et al.
1995ApJ...455L.171G 31 46 Grain alignment in the Taurus Dark Cloud. GERAKINES P.A., WHITTET D.C.B. and LAZARIAN A.
1993A&A...269..568P 2 10 82 The 2140 cm-1 band of frozen CO : laboratory experiments and astrophysical applications. PALUMBO M.E. and STRAZZULLA G.
1991A&ARv...2..167W 39 68 Carbon monoxide frosts in the interstellar medium. WHITTET D.C.B. and DULEY W.W.
1989ApJ...346..728J 64 97 Infrared polarimetry and the interstellar magnetic field. JONES T.J.
1989MNRAS.241..707W 18 71 Infrared spectroscopy of dust in the Taurus dark clouds : solid carbon monoxide. WHITTET D.C.B., ADAMSON A.J., DULEY W.W., et al.
1988MNRAS.233..321W 1 35 245 Infrared spectroscopy of dust in the Taurus dark clouds: ice and silicates. WHITTET D.C.B., BODE M.F., LONGMORE A.J., et al.
1987MNRAS.224..413T 19 75 Infrared polarimetry of dark clouds. I. Magnetic field structure in Heiles cloud 2. TAMURA M., NAGATA T., SATO S., et al.

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2021.03.06-00:06:01

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