A laboratory study of the effects of roughness on the thermal infrared spectra of rock surfaces

被引:21
|
作者
Osterloo, M. M. [1 ]
Hamilton, V. E. [2 ]
Anderson, F. S. [2 ]
机构
[1] Univ Hawaii Manoa, Hawaii Inst Geophys & Planetol, Sch Ocean & Earth Sci Technol, Honolulu, HI 96822 USA
[2] SW Res Inst, Planetary Sci Directorate, Boulder, CO 80302 USA
关键词
Spectroscopy; Infrared observations; Mineralogy; Mars; Surface; PARTICULATE PLANETARY SURFACES; PATHFINDER LANDING SITE; EMISSION-SPECTROSCOPY; PARTICLE-SIZE; IGNEOUS ROCKS; MU-M; REFLECTANCE; MARS; SCATTERING; EMISSIVITIES;
D O I
10.1016/j.icarus.2012.04.020
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Previous studies have shown that surface roughness can change the contrast or obscure diagnostic spectral signatures of geologic materials in the thermal infrared wavelength region potentially changing their detectability in remote sensing data of planetary surfaces. These studies attributed reduction in spectral contrast to blackbody cavity effects where multiple reflections reduce the number of photons measured at the sensor, resulting in shallowing of spectral features. However, not all rough surfaces have morphologies that create blackbody cavity effects. Here, we focus on investigating the effects of surface roughnesses on the infrared emission spectra of a variety of natural rock samples. Our results indicate that: (1) spectral contrast changes with roughness but complete obscuration of features is not observed; (2) the observed spectral contrast changes are not uniform across the spectrum; (3) spectral feature shapes do not change significantly and feature positions do not change significantly; (4) there is a threshold roughness for contrast changes (which varies across rock types), whereupon further reductions do not occur or in some cases, spectral contrast begins to increase; and (5) the spectral contrast reductions are best described by few surface reflections, not by a cavity effect. (C) 2012 Elsevier Inc. All rights reserved.
引用
收藏
页码:404 / 426
页数:23
相关论文
共 50 条
  • [41] Integrating seasonal optical and thermal infrared spectra to characterize urban impervious surfaces with extreme spectral complexity: a Shanghai case study
    Wang, Wei
    Yao, Xinfeng
    Ji, Minhe
    JOURNAL OF APPLIED REMOTE SENSING, 2016, 10
  • [42] INFRARED SPECTRA OF SILICA GEL WITH MODIFIED SURFACES
    SIDOROV, AN
    NEIMARK, NE
    ZHURNAL FIZICHESKOI KHIMII, 1964, 38 (12): : 2784 - 2791
  • [43] INFRARED SPECTRA FROM FINE PARTICULATE SURFACES
    ARONSON, JR
    EMSLIE, AG
    MCLINDEN, HG
    SCIENCE, 1966, 152 (3720) : 345 - &
  • [44] INFRARED EMISSION SPECTRA OF SURFACES - AN INTERFEROMETRIC APPROACH
    LOW, MJD
    JOURNAL OF CATALYSIS, 1965, 4 (06) : 719 - &
  • [45] INFRARED REFLECTION SPECTRA OF SOLID AND GLASS SURFACES
    DUNKEN, HH
    STEPHANOWITZ, R
    ZEITSCHRIFT FUR CHEMIE, 1983, 23 (10): : 353 - 365
  • [46] LABORATORY THERMAL CHAMBER FOR INFRARED THERMOGRAPHY
    Bernatavicius, Dainius
    Augulis, Liudvikas
    RADIATION INTERACTION WITH MATERIAL AND ITS USE IN TECHNOLOGIES 2012, 2012, : 395 - 398
  • [47] Thermal infrared astronomy for the introductory laboratory
    Padgett, Clifford W. W.
    Baird, William H. H.
    Coile, J. Spencer
    Johnson, Wayne M. M.
    Groneck, Erin N. N.
    Rose, Robert A. A.
    AMERICAN JOURNAL OF PHYSICS, 2023, 91 (02) : 122 - 131
  • [48] Quantifying total sulfide content of cores and cut-rock surfaces using thermal infrared reflectance
    Feng, Jilu
    Rivard, Benoit
    Gallie, E. Ann
    Sanchez, Arturo
    GEOPHYSICS, 2006, 71 (03) : M1 - M9
  • [49] Study on the retrieval of emissivity spectra from airborne thermal infrared data
    Zhang, X
    Zhang, B
    Zheng, LF
    Tong, QX
    Wang, JF
    Shu, R
    Xue, YQ
    JOURNAL OF INFRARED AND MILLIMETER WAVES, 2000, 19 (05) : 361 - 365
  • [50] Study on the retrieval of emissivity spectra from airborne thermal infrared data
    Zhang, Xia
    Zhang, Bing
    Zheng, Lanfen
    Tong, Qingxi
    Wang, Junfa
    Shu, Rong
    Xue, Yongqi
    2000, Chinese Opt Soc, China (19):