2015
DOI: 10.1139/cjp-2015-0281
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Determination of K shell absorption parameters for some lanthanides using the X-ray attenuation method

Abstract: The total attenuation cross section at the K edge, absorption jump ratio, jump factor, Davisson-Kirchner ratio and oscillator strength parameters for the K shell were determined by measuring the total attenuation cross sections around the K edge for Pr, Nd 2 O 3 and Sm. The measurements were performed in a secondary excitation geometry using the Kα 2 , Kα 1 , Kβ 1 and Kβ 2 X-rays (in the region from 31.817 to 55.293 keV) from different secondary source targets excited by the 59.54 keV γ-photons from an 241 Am … Show more

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Cited by 7 publications
(6 citation statements)
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References 36 publications
(44 reference statements)
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“…The Davisson-Kirchner ratio gives information about the total photoelectric contribution of higher shell electrons relative to K shell electrons. Moreover, study of this ratio as a function of photon energy gives information on an extended X-ray absorption fine structure [40]. The K shell oscillator strength is obtained from the following equation;…”
Section: Jinst 11 P08006mentioning
confidence: 99%
See 1 more Smart Citation
“…The Davisson-Kirchner ratio gives information about the total photoelectric contribution of higher shell electrons relative to K shell electrons. Moreover, study of this ratio as a function of photon energy gives information on an extended X-ray absorption fine structure [40]. The K shell oscillator strength is obtained from the following equation;…”
Section: Jinst 11 P08006mentioning
confidence: 99%
“…The K shell oscillator strength is the probability of transition of the K shell electrons to all allowable states. Several investigators determined the Davisson-Kirchner ratio and/ or K shell oscillator strength values for the different elements [34][35][36][37][38][39][40][41].…”
Section: Introductionmentioning
confidence: 99%
“…The some studies of K X-ray production/fluorescence crosssections, vacancy transfer probability and fluorescence yields for different pure elements and chemical effect on the K shell fluorescence yield of different element compounds and alloys have given in literature (Rao, Chen, & Crasemann, 1972;Krause, 1979;Mukoyama, Taniguchi, & Adachi, 1986;Bhuinya & Padhi, 1993;Sch€ onfeld & Janben, 1996, 2000Ertugrul, 2002Ertugrul, , 2005Raj, Dhal, Padhi, & Polasik, 1998, 2001,2002Polasik, 1998;Buyukkasap, 1998;Sharma, Kumar, Singh, Puri, & Singh, 2005;Kalayci et al, 2005;Aylıkci et al, 2009Aylıkci et al, , 2010Han & Demir, 2009, 2010a, 2010b, 2010cDagistanlı, Kalayci, & Mutlu, 2010;Kacal, Han, Akman, & Durak, 2012;Akman, Durak, & Kacal, 2015, Akman, Kacal, & Durak, 2016.…”
Section: Introductionmentioning
confidence: 99%
“…These parameters are important for many applied sciences such as health physics, engineering, radiation physics, and space research. There are many scienti ic studies carried out for these parameters using the different type matters in the literature [5][6][7][8][9][10][11][12][13][14][15]. The aim of this study is to investigate the radiation attenuation parameters such as mass attenuation coef icient, linear attenuation coef icient, half value layer, mean free path, and effective atomic number of commonly used in chemotherapeutic drugs such as Lomustine, Cisplatin, Carmustine, and Chlorambucil.…”
Section: Introductionmentioning
confidence: 99%