[B._Beckhoff,_et_al.]_Handbook_of_Practical_X-Ray_(b-ok.org).pdf

563 7885 1985 104 schaefers f mertins hch schmolla f

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563 , 78–85 (1985) 104. Schaefers F, Mertins HCh, Schmolla F, Packe I, Salashenko N, Shamov E, Appl Optics, 37 (No. 4), 719–728 (1978) 105. Erko A, Sch¨afers F, Vidal B, Yakshin A, Pietsch U, Mahler W, x-ray Super- mirrors for BESSY II, Rev Sci Instr 66 (No. 10), 4845–4846 (1995) 106. Yamamoto M, Namioka T, Layer-by-layer design method for soft X-Ray mul- tilayers, Appl Optics, 31 , 1622–1630 (1992) 107. Piechuch M, Nevot, Metallics Multilayers, Chamberod A (ed.), and Hillaret J, Mat Sci Forum, ( 59 and 60 ) (1990) 108. Beckmann P, Spizzichino A, The scattering of electromagnetic waves from rough surfaces, Pergamon New York, (1963) 109. Beckhoff B, X-ray focusing with Strongly Curved HOPG Crystals in the Energy-Dispersive x-ray Fluorescence Analysis, Ph.D. thesis, University of Bre- men (1995) 110. Kanngießer B, Beckhoff B, Scheer J, Swoboda W, The comparison of three excitation modes in the energy dispersive x-ray fluorescence analysis, Adv X- Ray Anal 35 , 1001–1007 (1992) 111. Moore AW, Highly oriented pyrolytic graphite, in Chemistry and Physics of Carbon, vol. 11, Marcel Dekker Inc., New York (1973)
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References 195 112. Ohler M, Baruchel J, Moore AW, Galez Ph, Freund AK, Direct observation of mosaic blocks in highly oriented pyrolytic graphite, Nucl Instr Meth Phys Res B129 , 257–260 (1997) 113. Kan XB, Misenheimer ME, Forster K, Moss SC, x-ray study of planar defects in highly oriented pyrolytic graphite (HOPG), Acta Crystallogr Sect A: Found Crystallogr 43 , 418–425 (1987) 114. Tuffanelli A, Sanchez Del Rio M, Pareschi G, Gambaccini M, Taibi A, Fantini A, Ohler M, Comparative characterization of highly oriented pyrolytic graphite by means of diffraction topography, Proc SPIE 3773 , 192–198 (1999) 115. Levin VM, Anotonov A, Grigorieva IG, et al., Investigation of acoustical prop- erties of carbon materials and composites, Institute of Chemical Physics of RAS, Report No. 30–89, Moscow (1990) 116. Ice GE, Sparks CJ, Jr, Mosaic crystal x-ray spectrometer to resolve inelastic background from anomalous scattering experiments, Nucl Instr Meth Phys Res A291 , 110–116 (1990) 117. Furnas, Jr. TC, Kunts GS, Furnas RE, Toroidal monochromators in hybrid XRF system improve effectiveness tenfold, Adv X-Ray Anal 25 , 59–62 (1981) 118. Furnas, Jr. TC, Lambert MC, Furnas RE, Use of toroidal monochromators in hybrid XRF system to obtain increased effectiveness ratios, Nucl Instr Meth Phys Res, special issue, 245–249 (1982) 119. Dowell MB, Howard BA, Tensile and compressive properties of flexible graphite foils, Carbon 24 , 311–323 (1986) 120. Antonov AA, Baryshev VB, Grigorieva IG, Kulipanov GN, Shipkov NN, Focusing shaped pyrographite monochromators in synchrotron radiation ex- periments, Nucl Instr Meth Phys Res A308 , 442–446 (1991) 121. Beckhoff B, Kanngiesser B, Scheer J, Swoboda W, Laursen J, Toroidally shaped HOPG crystals as strongly focusing Bragg reflectors of characteristic x-ray tube radiation for EDXRF analysis, Adv X-Ray Anal 37 , 523–533 (1994) 122. Dolbnya IP, Zolotarev K, Sheromov MA, Antonov AA, Grigorieva IG, Focusing parabolic pyrolytic graphite x-ray monochromator, Nucl Instr Meth Phys Res A359 , 141–145; (1995) ibid. A370 646–647 (1996) 123. Heckel J, Ryon RW, Polarized Beam x-ray Fluorescence Analysis, Handbook of X-Ray Spectrometry, 2nd edn, Marcel Dekker Inc, New York Basel, 603–630 (2002) 124. Grigorieva IG, Antonov AA, HOPG as powerful x-ray optics, X-Ray Spectrom
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