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Deep Impact as a World Observatory Event: Synergies in Space, Time, and Wavelength - Proceedings of the ESO/VUB Conference held... Deep Impact as a World Observatory Event: Synergies in Space, Time, and Wavelength - Proceedings of the ESO/VUB Conference held in Brussels, Belgium, 7-10 August 2006 (Hardcover, 2009 ed.)
Hans Ulrich Kaufl, Christiaan Sterken
R2,837 Discovery Miles 28 370 Ships in 10 - 15 working days

In the context of the NASA Deep Impact space mission, comet 9P/Tempel1 has been at the focus of an unprecedented worldwide long-term multi-wavelength observation campaign. The comet was also studied throughout its perihelion passage by various sources including the Deep Impact mission itself, the Hubble Space Telescope, Spitzer, Rosetta, XMM and all major ground-based observatories in a wavelength band from cm-wave radio astronomy to x-rays.

This book includes the proceedings of a meeting that brought together an audience of theoreticians and observers - across the electromagnetic spectrum and from different sites and projects - to make full use of the massive ground-based observing data set. The coherent presentation of all data sets illustrates and examines the various observational constraints on modelling the cometary nucleus, cometary gas, cometary plasma, cometary dust, and the comet's surface and its activity.

High Resolution Infrared Spectroscopy in Astronomy - Proceedings of an ESO Workshop Held at Garching, Germany, 18-21 November... High Resolution Infrared Spectroscopy in Astronomy - Proceedings of an ESO Workshop Held at Garching, Germany, 18-21 November 2003 (Hardcover, 2005 ed.)
Hans Ulrich Kaufl, R. Siebenmorgen, Alan F.M. Moorwood
R2,137 R1,667 Discovery Miles 16 670 Save R470 (22%) Ships in 12 - 17 working days

Two specialized new instruments for ESO's VLT, VISIR and CRIRES, spawned the idea for this workshop. CRIRES is a dedicated very high resolution infrared spectrograph; VISIR features a high resolution spectroscopic mode. Together, the instruments combine the sensitivity of an 8m-telescope with the now well-established reliability of VLT-facility instruments. High resolution here means that lines in cool stellar atmospheres and HII-regions can be resolved. The astrophysical topics discussed in this rather specialized workshop range from the inner solar system to active galactic nuclei. There are many possibilities for new discoveries with these instruments, but the unique capability, which becomes available through high-resolution infrared spectroscopy, is the observation of molecular rotational-vibrational transitions in many astrophysical environments. Particularly interesting and surprising in this context, many papers on modeling and laboratory spectroscopy at the workshop appear to indicate that astronomical observations are lagging a bit behind in this field. The papers are an interesting mix of reports from existing high resolution facilities, reports on modeling efforts of synthetic spectra and reports on laboratory spectra. In this sense, a fruitful exchange between molecular physics and astronomy was again accomplished and is documented in this volume.

High Resolution Infrared Spectroscopy in Astronomy - Proceedings of an ESO Workshop Held at Garching, Germany, 18-21 November... High Resolution Infrared Spectroscopy in Astronomy - Proceedings of an ESO Workshop Held at Garching, Germany, 18-21 November 2003 (Paperback, Softcover reprint of hardcover 1st ed. 2005)
Hans Ulrich Kaufl, R. Siebenmorgen, Alan F.M. Moorwood
R1,552 Discovery Miles 15 520 Ships in 10 - 15 working days

Two specialized new instruments for ESO's VLT, VISIR and CRIRES, spawned the idea for this workshop. CRIRES is a dedicated very high resolution infrared spectrograph; VISIR features a high resolution spectroscopic mode. Together, the instruments combine the sensitivity of an 8m-telescope with the now well-established reliability of VLT-facility instruments. High resolution here means that lines in cool stellar atmospheres and HII-regions can be resolved. The astrophysical topics discussed in this rather specialized workshop range from the inner solar system to active galactic nuclei. There are many possibilities for new discoveries with these instruments, but the unique capability, which becomes available through high-resolution infrared spectroscopy, is the observation of molecular rotational-vibrational transitions in many astrophysical environments. Particularly interesting and surprising in this context, many papers on modeling and laboratory spectroscopy at the workshop appear to indicate that astronomical observations are lagging a bit behind in this field. The papers are an interesting mix of reports from existing high resolution facilities, reports on modeling efforts of synthetic spectra and reports on laboratory spectra. In this sense, a fruitful exchange between molecular physics and astronomy was again accomplished and is documented in this volume.

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