Open Access

The Possibility of Ultraviolet Enceladus’ Observations from Stratospheric Balloons


Cite

[1] Judge P., 2017, “A novel strategy to seek biosignatures at Enceladus and Europa”, Astrobiology, 17(9), 852-861.10.1089/ast.2017.166728872897 Search in Google Scholar

[2] Vollmer M., Klaus-Peter, M. Ã., 2017, Infrared thermal imaging: fundamentals, research and applications, John Wiley & Sons.10.1002/9783527693306 Search in Google Scholar

[3] Carn S. A., Krotkov, N. A., 2016, Volcanic Ash, Elsevier, Chap. 12. Search in Google Scholar

[4] Becker T. M., Retherford K. D., Roth L., McGrath M. A., Saur J., Hendrix A. R., Raut U., 2016, “Far-UV Spectral and Spatial Analysis from HST Observations of Europa”, AGU Fall Meeting Abstracts. Search in Google Scholar

[5] Czapski P., Dorosz K., Kacprzak M., Korniluk T., Kotlarz J., Mazur A., Rotchimmel K., 2016, “Pozyskiwanie i przetwarzanie danych lotniczych i satelitarnych przez zespół badawczy Zakładu Teledetekcji Instytutu Lotnictwa” (Acquisition and processing of aerial and satellite data by a research team of the Remote Sensing Department in Institute of Aviation), Przegląd Geodezyjny, 88(3), 4-9.10.15199/50.2016.3.1 Search in Google Scholar

[6] Romualdez L. J., Benton S. J., Clark P., Damaren C. J., Eifler T., Fraisse A. A., Lipton L., 2016, “The design and development of a high-resolution visible-to-near-UV telescope for balloon-borne astronomy: SuperBIT”. arXiv preprint arXiv:1608.02502. Search in Google Scholar

[7] Sreejith A. G., Mathew J., Sarpotdar M., Nirmal K., Ambily S., Prakash A., Murthy J., 2016, “Balloon UV experiments for astronomical and atmospheric observations”, arXiv preprint arXiv:1608.06385. Search in Google Scholar

[8] Ambily S., Mathew J., Sarpotdar M., Sreejith A. G., Nirmal K., Prakash A., Murthy J., 2016, “Near UV imager with an MCP-based photon counting detector”, Space Telescopes and Instrumentation 2016: Ultraviolet to Gamma Ray, Vol. 9905, p. 990539, International Society for Optics and Photonics.10.1117/12.2232435 Search in Google Scholar

[9] Danielson R. E., 1961, “The Structure of Sunspot Penumbras”, The Astrophysical Journal, 134, p. 275.10.1086/147158 Search in Google Scholar

[10] Solanki S. K., Barthol P., Danilovic S., Feller A., Gandorfer A., Hirzberger J., del Toro Iniesta J. C., 2010, “SUNRISE: instrument, mission, data, and first results”, The Astrophysical Journal Letters, 723(2), L127.10.1088/2041-8205/723/2/L127 Search in Google Scholar

[11] Milliard B., Donas J., Laget M., 1991, “A 40-cm UV (2000 Å) balloon-borne imaging telescope: results and current work”, Advances in Space Research, 11(11), 135-138.10.1016/0273-1177(91)90068-U Search in Google Scholar

[12] Donas J., Deharveng J. M., Laget M., Milliard B., Huguenin D., 1987, “Ultraviolet observations and star-formation rate in galaxies”, Astronomy and Astrophysics, 180, 12-26. Search in Google Scholar

[13] Schwarzschild M., 1959, “Photographs of the Solar Granulation Taken from the Stratosphere”, The Astrophysical Journal, 130, 345.10.1086/146725 Search in Google Scholar

[14] Hansen C. J., Esposito L. W., Aye K. M., Colwell J. E., Hendrix A. R., Portyankina G., Shemansky D., 2017, “Investigation of diurnal variability of water vapor in Enceladus' plume by the Cassini ultraviolet imaging spectrograph”, Geophysical Research Letters, 44(2), 672-677.10.1002/2016GL071853 Search in Google Scholar

[15] Hansen C., Esposito L., Colwell J., Hendrix A., Portyankina G., 2017, “Enceladus Plume Morphology and Variability from UVIS Measurements”, AAS/Division for Planetary Sciences Meeting Abstracts, Vol. 49. Search in Google Scholar

[16] Teolis B. D., Perry M. E., Hansen C. J., Waite J. H., Porco C. C., Spencer J. R., Howett C. J., 2017, “Enceladus Plume Structure and Time Variability: Comparison of Cassini Observations”, Astrobiology, 17(9), 926-940.10.1089/ast.2017.1647561043028872900 Search in Google Scholar

[17] Hendrix A. R., Hansen C. J., Royer E. M., Cassidy T. A., Esposito L. W., Holsclaw G. M., 2017, “Enceladus: Using UV Data to Study Plume Fallout”, Lunar and Planetary Science Conference, Vol. 48. Search in Google Scholar

[18] Scipioni F., Schenk P., Tosi F., D'Aversa E., Clark R., Combe J. P., Dalle Ore C. M., 2017, “Deciphering sub-micron ice particles on Enceladus surface”, Icarus, 290, 183-200.10.1016/j.icarus.2017.02.012 Search in Google Scholar

[19] Khare B. N., Sagan C., 1979, “Organic dust synthesized in reducing environments by ultraviolet radiation or electric discharge”, Astrophysics and Space Science, 65(2), 309-312.10.1007/BF00648498 Search in Google Scholar

[20] Neish C. D., Somogyi Á., Smith M. A., 2010, “Titan's primordial soup: formation of amino acids via low-temperature hydrolysis of tholins”, Astrobiology, 10(3), 337-347.10.1089/ast.2009.040220446873 Search in Google Scholar

[21] Zalewska N., Kotlarz J., Kacprzak M., Korniluk T., 2017, „Detekcja biomarkerów w pióro-puszach gazowych za pomocą kamery wielospektralnej w projektowanej misji Enceladus Orbiter (NASA)” (“Detection of Biomarkers in Gas Plumes Using a Multi-Spectral Camera in the Proposed Enceladus Orbiter Mission (NASA)”). Pomiary Automatyka Robotyka, 21(3), 35-44.10.14313/PAR_225/35 Search in Google Scholar

[22] Huffman R. E., 1985, “Atmospheric emission and absorption of ultraviolet radiation”, Hand- book of Geophysics and the Space Environment, Chap. 22, Air Force Geophysics Laboratory, Air Force Systems Command, US Air Force, Springfield. Search in Google Scholar

[23] Lutgens F. K., Tarbuck E. J., Tusa D., 1995, The atmosphere. Englewood Cliffs, NJ: Prentice-Hall. Search in Google Scholar

[24] Enfield D. B., Smith P. J., 2017, “Climate”, from: https://www.britannica.com/science/climate-meteorology/Winds-in-the-stratosphere-and-mesosphere Search in Google Scholar

[25] Hendrix A. R., Hansen C. J., Holsclaw G. M., 2010, “The ultraviolet reflectance of Enceladus: Implications for surface composition”, Icarus, 206(2), 608-617.10.1016/j.icarus.2009.11.007 Search in Google Scholar

[26] Hendrix A. R., Hansen, C. J., 2009, “The surface composition of Enceladus: clues from the Ultraviolet”, Proceedings of the International Astronomical Union, 5(S263), 126-130.10.1017/S1743921310001626 Search in Google Scholar

[27] Farrell W. M., Wahlund J. E., Morooka M., Gurnett D. A., Kurth W. S., MacDowall R. J., 2012, “The electromagnetic pickup of submicron-sized dust above Enceladus’s northern hemisphere”, Icarus, 219(1), 498-501.10.1016/j.icarus.2012.02.033 Search in Google Scholar

[28] Newman S. F., Buratti B. J., Jaumann R., Bauer J. M., Momary T. W., 2007, “Hydrogen peroxide on Enceladus”, The Astrophysical Journal Letters, 670(2), L143.10.1086/524403 Search in Google Scholar

eISSN:
2545-2835
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other, Geosciences, Materials Sciences, Physics