• Acta Optica Sinica
  • Vol. 26, Issue 4, 634 (2006)
[in Chinese]*, [in Chinese], [in Chinese], [in Chinese], and [in Chinese]
Author Affiliations
  • [in Chinese]
  • show less
    DOI: Cite this Article Set citation alerts
    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Determination of Primary Energy Spectrum Distribution of X-Ray Tube in X-Ray Fluorescence Analysis[J]. Acta Optica Sinica, 2006, 26(4): 634 Copy Citation Text show less
    References

    [1] V. P. Afonin, A. L. Finkelshtein, V. J. Borkhodoev et al.. X-ray fluorescence analysis of rocks by the fundamental parameter method[J]. X-Ray Spectrometry, 1992, 21(2): 69~75

    [2] V. Homkimaki, K. Hamalainen, S. Manninen. Quantitative X-ray fluorescence analysis using fundamental parameters: application to gold jewelry[J]. X-Ray Spectrometry, 1996, 25(5): 215~220

    [3] K. Nygard, K. Hamalainen, S. Manninen et al.. Quantitative thickness determination using X-ray luorescence: application to multiple layers[J]. X-Ray Spectrometry, 2004, 33(5): 354~359

    [4] R. Grgl, P. Wobrauschek, P. Kregsamer et al.. Measurement of the spectral distribution of a diffraction X-ray tube with a solid-state detector[J]. X-Ray Spectrometry, 1992, 21(1): 37~42

    [5] P. A. Pella, L. Feng, J. A. An analytical algorithm for calculation of spectral distributions of X-ray tubes for quantitative X-ray fluorescence analysis[J]. X-Ray Spectrometry, 1985, 14(3): 125~135

    [6] M. G. Brunetto, J. A. Riveros. A modification of Kramers′ law for the X-ray continuum from thick targets[J]. X-Ray Spectrometry, 1984, 13(2): 60~63

    [7] R. Tertian, N. Broll. Spectral intensity distributions from X-ray tubes. Calculated versus experimental evaluations[J]. X-Ray Spectrometry, 1984, 13(3): 134~141

    [8] Raid T. Mainardi, Raul A. Barrea. Indirect method of X-ray spectra determination by XRF[J]. X-Ray Spectrometry, 1996, 25(4): 190~195

    [9] R. Tertian, F. Claisse. Principles of Qualitative X-Ray Fluorescence Analysis[M]. London: Heyden, 1982

    [10] Ji Xingming, Zhu Jieqing, Xu Hongjie. Semi-empirical schemes for X-ray mass absorption coefficients used in XRF analysis[J]. Nuclear Science and Techniqeus, 2002, 13(1): 42~49

    [12] Berger M J, Hubbell J H S. Tables of X-Ray Mass Attenuation Coefficients and Mass Energy-Absorption Coefficients, National Bureau of Standards, Gaithersburg, USA. 1995. NISTIR 95-5632

    [13] S J B Reed, N G Ware. Escape peaks and internal fluorescence in X-ray spectra recorded with lithium drifted silicon detectors[J]. J. Physics E, 1972, 5: 582~584

    [14] Victor Delgado Martinez, Raul T. Mainardi, Raul A. Barrea et al.. Parametric equation for the efficiency curve of germanium detectors[J]. X-Ray Spectrometry, 1998, 27(5): 321~324

    [15] V. Rosiger, K. P. Dostal. Determination of the primary energy distribution in XRF analysis[J]. Isotopenpraxis, 1987, 23(4): 131~133

    [16] C. Martínez, V. Delgado. Description of X-ray beams using the fluorescence yields of a set of thick targets[J]. X-Ray Spectrometry, 1995, 24(5): 255~259

    [17] R. T. Mainardi, R. A. Barrea. Determination of spectral emission of tungsten target tubes measuring X-ray fluorescence from pure elements[J]. Appl. Radiat. Isot., 1995, 46: 497~498

    [18] R. T. Mainardi, R. A. Barrea. Indirect method of X-ray spectra determination by XRF[J]. X-Ray Spectrometry, 1996, 25(4): 190~195

    [19] P. A .Pells, Liangyuan Feng, J. A. Small. An analytical algorithm for calculation of spectral distributions of X-ray tube for quantitative X-ray fluorescence analysis[J]. X-Ray Spectrometry, 1985, 14(3): 125~135

    [in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Determination of Primary Energy Spectrum Distribution of X-Ray Tube in X-Ray Fluorescence Analysis[J]. Acta Optica Sinica, 2006, 26(4): 634
    Download Citation