Issues

 / 

2007

 / 

June

  

Instruments and methods of investigation


Spectral and spectral-frequency methods of investigating atmosphereless bodies of the Solar system

 a,  b,  b
a Lomonosov Moscow State University, Shternberg State Astronomical Institute, Universitetskii prosp. 13, Moscow, 119234, Russian Federation
b Crimean Astrophysical Observatory, Nauchnyi, Republic of Crimea, Russian Federation

А method of reflectance spectrophotometry of atmosphereless bodies of the Solar system, its specificity, and the means of eliminating basic spectral noise are considered. As а development, joining the method of reflectance spectrophotometry with the frequency analysis of observational data series is proposed. The combined spectral-frequency method allows identification of formations with distinctive spectral features, and estimations of their sizes and distribution on the surface of atmospherelss celestial bodies. As applied to investigations of asteroids 21 Lutetia and 4 Vesta, the spectral frequency method has given us the possibility of obtaining fundamentally new information about minor planets.

Fulltext pdf (224 KB)
Fulltext is also available at DOI: 10.1070/PU2007v050n06ABEH006333
PACS: 95.55.Qf, 95.85.Kr, 96.30.Ys (all)
DOI: 10.1070/PU2007v050n06ABEH006333
URL: https://ufn.ru/en/articles/2007/6/d/
000249986100004
2-s2.0-35248882559
2007PhyU...50..637B
Citation: Busarev V V, Prokof’eva-Mikhailovskaya V V, Bochkov V V "Spectral and spectral-frequency methods of investigating atmosphereless bodies of the Solar system" Phys. Usp. 50 637–647 (2007)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Оригинал: Бусарев В В, Прокофьева-Михайловская В В, Бочков В В «Спектральный и спектрально-частотный методы исследования безатмосферных тел Солнечной системы» УФН 177 663–675 (2007); DOI: 10.3367/UFNr.0177.200706d.0663

References (56) Cited by (10) Similar articles (20) ↓

  1. V.M. Petrov, P.M. Agruzov et alBroadband integrated optical modulators: achievements and prospectsPhys. Usp. 64 722–739 (2021)
  2. V.N. Ochkin “Spectroscopy of small gas components of a nonequilibrium low-temperature plasmaPhys. Usp. 65 1071–1103 (2022)
  3. A.E. Ieshkin, A.B. Tolstoguzov et alGas-dynamic sources of cluster ions for basic and applied researchPhys. Usp. 65 677–705 (2022)
  4. A.M. Zheltikov “Microstructure optical fibers for a new generation of fiber-optic sources and converters of light pulsesPhys. Usp. 50 705–727 (2007)
  5. G.A. Gusev, B.N. Lomonosov et alIce satellites of planets of the Solar System and the on-orbit radio detection of ultrahigh-energy particlesPhys. Usp. 53 915–921 (2010)
  6. M.I. Lomaev, V.S. Skakun et alExcilamps: efficient sources of spontaneous UV and VUV radiationPhys. Usp. 46 193–209 (2003)
  7. V.G. Kurt, E.N. Mironova “The methods of local interstellar medium investigationPhys. Usp. 56 910–918 (2013)
  8. O.V. Verkhodanov, A.G. Doroshkevich “Sky pixelization for the analysis of extended emissionPhys. Usp. 56 801–812 (2013)
  9. V.V. Lider “X-ray microscopyPhys. Usp. 60 187–203 (2017)
  10. V.G. Dudnikov “Surface-plasma method for the production of negative ion beamsPhys. Usp. 62 1233–1267 (2019)
  11. T.A. Isaev “Direct laser cooling of moleculesPhys. Usp. 63 289–302 (2020)
  12. E.N. Ragozin, E.A. Vishnyakov et alSoft X-ray spectrometers based on aperiodic reflection gratings and their applicationPhys. Usp. 64 495–514 (2021)
  13. M.A. Proskurnin, V.R. Khabibullin et alPhotothermal and optoacoustic spectroscopy: state of the art and prospectsPhys. Usp. 65 270–312 (2022)
  14. I.B. Borovskii, R.V. Vedrinskii et alEXAFS spectroscopy: a new method for structural investigationSov. Phys. Usp. 29 539–569 (1986)
  15. G.P. Mel’nikov “The measurement of multidimensional spectra in nuclear physicsSov. Phys. Usp. 4 370–373 (1961)
  16. S.G. Rautian “Real spectral apparatusSov. Phys. Usp. 1 245–273 (1958)
  17. N.M. Blashenkov, G.Ya. Lavrent’ev “Surface-ionization field mass-spectrometry studies of nonequilibrium surface ionizationPhys. Usp. 50 53–78 (2007)
  18. A.V. Kozlovskii “Generation оf squeezed (sub-Poissonian) light by а multimode laserPhys. Usp. 50 1243–1258 (2007)
  19. A.B. Aleksandrov, A.V. Bagulya et alCharge spectrum of galactic cosmic ray nuclei as measured in meteorite olivinesPhys. Usp. 53 805–808 (2010)
  20. V.P. Ponomarenko “Cadmium mercury telluride and the new generation of photoelectronic devicesPhys. Usp. 46 629–644 (2003)

The list is formed automatically.

© 1918–2026 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions