• [1]

    D. A. Brown, M. B. Chadwick, R. Capote et al., Nucl. Data Sheets 148, 142 (2018)

  • [2]

    M. Yiğit, E. Tel, and G. Tanır, J. Fusion Energy 32, 321 (2013)

  • [3]

    C. Bhatia and W. Tornow, J. Phys. G Nucl. Part. Phys. 40, 65104 (2013)

  • [4]

    N. Otuka, E. Dupont, V. Semkova et al., Nucl. Data Sheets 120, 276 (2014)

  • [5]

    A. J. Koning, M. C. Duijvestijn, and S. Hilaire, EDP Sciences, 211, 214 (2008)

  • [6]

    M. Herman, R. Capote, B. V. Carlson et al., Nucl. Data Sheets 108, 2715 (2007)

  • [7]

    O. Iwamoto, N. Iwamoto, K. Shibata et al., EPJ Web Conf. 239, 9002 (2020)

  • [8]

    A. J. Koning, D. Rochman, J. C. Sublet et al., Nucl. Data Sheets 155, 55 (2019)

  • [9]

    V. N. Bhoraskar, Indian J. Pure Appl. Phys. 27, 648: 655 (1989)

  • [10]

    V. E. Lewis and K. J. Zieba, Nucl. Instrum. Meth. 174, 144 (1980)

  • [11]

    T. S. Ganesapandy, G. T. Bholane, A. B. Phatangare et al., Eur. Phys. J. Plus 137, 711 (2022)

  • [12]

    C. D. Nesaraja, Nucl. Data Sheets 115, 134 (2014)

  • [13]

    E. A. McCutchan, Nucl. Data Sheets 113, 1870 (2012)

  • [14]

    E. Browne and J. K. Tuli, Nucl. Data Sheets 111, 2553 (2010)

  • [15]

    H. Junde, H. Xiaolong and J. K. Tuli, Nucl. Data Sheets 106, 159 (2005)

  • [16]

    E. Browne and J. K. Tuli, Nucl. Data Sheets 111, 1209 (2010)

  • [17]

    B. A. I. ERJUN and H. U. O. JUNDE, Nucl. Data Sheets 92, 252 (2001)

  • [18]

    S. K. Basu and E. A. Mccutchan, Nucl. Data Sheets 165, 329 (2020)

  • [19]

    E. A. McCutchan and A. A. Sonzogni, Nucl. Data Sheets 115, 304 (2014)

  • [20]

    E. Browne and J. K. Tuli, Nucl. Data Sheets 145, 340 (2017)

  • [21]

    J. Chen and B. Singh, Nucl. Data Sheets 164, 477 (2020)

  • [22]

    N. Nica, Nucl. Data Sheets 111, 716 (2010)

  • [23]

    D. Abriola and A. A. Sonzogni, Nucl. Data Sheets 109, 2655 (2008)

  • [24]

    C. M. Baglin, Nucl. Data Sheets 112, 1389 (2011)

  • [25]

    C. M. Baglin, Nucl. Data Sheets, 2389 (2012)

  • [26]

    B. Singh, Nucl. Data Sheets 114, 208 (2013)

  • [27]

    M . Shamsuzzoha Basunia, Nucl. Data Sheets 112, 1948 (2011)

  • [28]

    R. B. Firestone, Nucl. Data Sheets 108, 2392 (2007)

  • [29]

    M. J. Martin, Nucl. Data Sheets 114, 1847 (2013)

  • [30]

    T. Vidmar, Nucl. Instruments Methods Phys. Res. Sect. A Accel. Spectrometers, Detect. Assoc. Equip. 550, 603 (2005)

  • [31]

    L. P. Geraldo and D. L. Smith, Nucl. Instruments Methods Phys. Res. Sect. A Accel. Spectrometers, Detect. Assoc. Equip. 290, 508 (1990)

  • [32]

    N. Otuka, B. Lalremruata, M. U. Khandaker et al., Radiat. Phys. Chem. 140, 510 (2017)

  • [33]

    NuDat 3.0, https://www.nndc.bnl.gov/nudat3/

  • [34]

    S. Sudar, IAEA-Tecdoc-1275 1275, 37-48 (2002)

  • [35]

    NIST Standard Reference Database, http://physics.nist.gov/PhysRefData/XrayMassCoef/cover.html

  • [36]

    T. S. Ganesapandy, G. T. Bholane, A. B. Phatangare et al., Nucl. Phys. A 1023, 122445 (2022)

  • [37]

    B. S. Shivashankar, S. Ganesan, H. Naik et al., Nucl. Sci. Eng. 179, 433 (2015)

  • [38]

    A. V. Ignatyuk, J. L. Weil, S. Raman et al., Phys. Rev. C 47, 1513 (1993)

  • [39]

    A. J. Koning and J. P. Delaroche, Nucl. Phys. A 713, 310 (2003)

  • [40]

    A. J. Koning and M. C. Duijvestijn, Nucl. Phys. A 744, 15 (2004)

  • [41]

    S. Hilaire, M. Girod, S. Goriely et al., Phys. Rev. C 86, 64317 (2012)

  • [42]

    S. Goriely, S. Hilaire, and A. J. Koning, Phys. Rev. C 78, 64307 (2008)

  • [43]

    D. Brink, Nucl. Phys. 4, 220 (1957)

  • [44]

    P. Axel, Phys. Rev. 126, 683 (1962)

  • [45]

    D. L. Smith, ANL/NDM-, 159 (2005)

  • [46]

    S. Goriely, F. Tondeur, and J. M. Pearson, Nucl. Data Tables 77, 311 (2001)

  • [47]

    R. Capote, M. Herman, P. Obložinský et al., Nucl. Data Sheets 110, 3214 (2009)

  • [48]

    A. V. Ignatyuk, K. K. Istekov and G. N. Smirenkin, Sov. J. Nucl. Phys. 29, 883 (1979)

  • [49]

    P. E. Hodgson, Reports Prog. Phys. 47, 654 (1984)

  • [50]

    V. A. Plujko, Acta Phys. Pol. B 31, 435 (2000)

  • [51]

    A. Trkov, P. J. Griffin, S. P. Simakov et al., Nucl. Data Sheets 163, 108 (2020)

  • [52]

    M. S. Uddin, Radiochim. Acta 110, 1 (2022)

  • [53]

    N. I. Molla, R. U. Miah, S. Basunia et al., Conf. on Nucl. Data for Sci. and Techn. 2, 938 (1994)

  • [54]

    A. Ercan, M. N. Erduran, M. Subasi et al., Conf. on Nucl. Data for Sci. and Techn., 376 (1991)

  • [55]

    S. Hlavac, J. Kristiak, P. Oblozinsky et al., Acta Phys. Slovaca 26, 64 (1976)

  • [56]

    S. M. Qaim, Nucl. Phys. A 185, 624 (1972)

  • [57]

    N. Ranakumar, E. Kondaiah, and R. W. Fink, Nucl. Phys. A 122, 683 (1968)

  • [58]

    J. Károlyi, J. Csikai, and G. Petö, Nucl. Phys. A 122, 240 (1968)

  • [59]

    L. Hanlin, Z. Wenrong and Y. Weixiang, Chinese J. Nucl. Phys. 13, 11 (1991)

  • [60]

    M. Herman, A. Marcinkowski, J. Dresler et al., INR- 1871/I/PL/A, 13 (1980)

  • [61]

    A. A. Filatenkov, INDC(CCP)-0, 460 (2016)

  • [62]

    S. K. Ghorai, P. M. Sylva, J. R. Williams et al., Ann. Nucl. Energy 22, 15 (1995)

  • [63]

    D. Kielan and A. Marcinkowski, Zeitschrift für Phys. A Hadron. Nucl. 352, 143 (1995)

  • [64]

    B. Anders, B. M. Bahal and R. Pepelnik, GKSS-, 85-E-24 (1985)

  • [65]

    M. Viennot, A. A. Haddou, A. Chiadli et al., Conf. on Nucl. Data for Sci. and Techn., 406 (1982)

  • [66]

    C. V. Srinivasa Rao, N. Lakshmana Das, B. V. Thirumala Rao et al., Chinese J. Nucl. Phys. 51, 466 (1981)

  • [67]

    R. A. Sigg, Fast neutron induced reaction cross sections and their systematics, Ph. D. Thesis (Arkansas Univ. , Fayetteville, USA, 1976)

  • [68]

    V. K. Tikku, H. Singh, and B. Sethi, 15th Nucl. and Solid State Physics Symp. , p.115 (1972)

  • [69]

    B. Lalremruata, N. Otuka, G. J. Tambave et al., Phys. Rev. C 85, 24624 (2012)

  • [70]

    Y. Kasugai, H. Yamamoto, K. Kawade et al., Ann. Nucl. Energy 25, 45 (1998)

  • [71]

    J. L. BarreiraFilho and H. U. Fanger, Ges. Kernen.-Verwertung, Schiffbau and Schiffahrt, 82 (1982)

  • [72]

    S. M. Qaim, R. Qoelfle, and G. Stoecklin, Chemical Nucl. Data Conf., 121 (1971)

  • [73]

    J. U. N. Sato, N. Saito, Y. Yokoyama, Radiochim. Acta 16, 74 (1971)

  • [74]

    E. T. Bramlitt and R. W. Fink, Phys. Rev. 131, 2663 (1963)

  • [75]

    I. L. Preiss and R. W. Fink, Nucl. Phys. 15, 336 (1960)

  • [76]

    U. Garuska, J. Dresler and H. Malecki, INDC(POL)- 11, 15 (1980)

  • [77]

    H. G. Blosser, C. D. Goodman, T. H. Handley et al., Phys. Rev. 100, 429 (1955)

  • [78]

    C. Konno, Y. Ikeda, K. Oishi et al., JAERI-, 1329 (1993)

  • [79]

    M. Valkonen, Studies of 14 MeV neutron activation cross sections with special reference to the capture reaction, Ph. D. Thesis(Jyvaeskylae Univ. , Finland, 1976)

  • [80]

    G. P. Vinitskaya, V. N. Levkovskii and V. V. Sokolskii, Yad. Fiz. 6, 240 (1967)

  • [81]

    I. Pasha, R. Basavanna, S. S. Yerranguntla et al., J. Radioanal. Nucl. Chem. 322, 2064 (2019)

  • [82]

    K. Xiangzhong, W. Yongchang, Y. Junqian et al., J. Lanzhou Univ. Nat. Sci. Ed. 28, 99 (1992)

  • [83]

    H. G. Raj Prakash, G. Sanjeev, K. B. Vijay Kumar et al., Ann. Nucl. Energy 38, 757 (2011)

  • [84]

    J. L. Casanova and M. L. Sanchez, An. Fis. 72, 186 (1976)

  • [85]

    J. Dresler, J. Araminowicz and U. Garuska, INR- 1464, 12 (1973)

  • [86]

    R. Prasad and D. C. Sarkar, Nuovo Cim. A 3, 478 (1971)

  • [87]

    T. Clator, Jour:Dissertation Abstracts B (Sciences) 30, 2850 (1969)

  • [88]

    M. Bormann, E. Fretwurst, P. Schehka et al., Nucl. Phys. 63, 448 (1965)

  • [89]

    C. V. S. Rao, N. L. Das, B. V. T. Rao et al., Curr. Sci. 51, 466 (1982)

  • [90]

    N. I. Molla and S. M. Qaim, Nucl. Phys.A 283, 288 (1977)

  • [91]

    M. Viennot, M. Berrada, G. Paic et al., Nucl. Sci.Eng. 108, 301 (1991)

  • [92]

    J. Araminowicz and J. Dresler, INR- 1464, 14 (1973)

  • [93]

    M. Bormann and B. Lammers, Nucl. Phys. A 130, 208 (1969)

  • [94]

    J. Csikai and G. Pető, Acta Phys. Acad. Sci. Hungaricae 23, 94 (1967)

  • [95]

    M. Wagner, G. Winkler, H. Vonach et al., Ann. Nucl. Energy 16, 635 (1989)

  • [96]

    K. Kayashima, A. Nagao, and I. Kumabe, NEANDC(J)- 61U, 94 (1979)

  • [97]

    A. Paulsen, H. Liskien, and R. Widera, Atomkernenergie 26, 34 (1975)

  • [98]

    D. A. Rutherford, Los Alamos Scientific Lab. Reports No., 11233-T (1988)

  • [99]

    N. I. Molla, M. M. Islam, M. M. Rahman et al., Progress Report INDC(BAN)-00 2, 1 (1983)

  • [100]

    J. Luo and L. Jiang, Nucl. Sci. Eng. 184, 262 (2016)

  • [101]

    C. Zhu, Y. Chen, Y. Mou et al., Nucl. Sci. Eng. 169, 197 (2011)

  • [102]

    N. I. Molla, S. Basunia, M. R. Miah et al., Radiochim. Acta 80, 192 (1998)

  • [103]

    R. M. Klopries, R. Dóczi, J. Csikai et al., Radiochim. Acta 76, 10 (1997)

  • [104]

    M. Berrada, IAEA-W-BERRADA-, 19840415 (1984)

  • [105]

    P. Raics, F. Paszti, S. Daroczy et al., ATOMKI Koezlemenyek 23, 45 (1981)

  • [106]

    J. Laurec, A. Adam and T. de Bruyne, CEA-R-, 5109 (1981)

  • [107]

    J. Huang, H. Lu, J. Li et al., Chinese J. Nucl. Phys. 2, 213 (1980)

  • [108]

    S. K. Ghorai, C. G. Hudson, and W. L. Alford, Nucl. Phys. A 266, 60 (1976)

  • [109]

    S. M. Qaim and G. Stoecklin, EUR- 5182, 939 (1974)

  • [110]

    F. Zhou, H. Zhang, H. Huang et al., Appl. Radiat. Isot. 66, 1900 (2008)

  • [111]

    S. Iwasaki, S. Matsuyama, T. Ohkubo et al., Conf. on Nucl. Data for Sci. and Techn. 1, 305 (1994)

  • [112]

    L. R. Greenwood, American Soc. of Testing and Materials Reports No. 956, 743 (1987)

  • [113]

    H. M. Agrawal, K. Pandey, K. Surendra Babu et al., Ann. Nucl. Energy 35, 1719 (2008)

  • [114]

    S. V. Begun, I. M. Kadenko, V. K. Maidanyuk et al., Izv. Ross. Akad. Nauk 64, 1017 (2000)

  • [115]

    G. Magnusson, P. Andersson, and I. Bergqvist, Phys. Scr. 21, 26 (1980)

  • [116]

    O. Schwerer, M. Winkler-Rohatsch, H. Warhanek et al., Nucl. Phys. A 264, 114 (1976)

  • [117]

    H. A. Grench, K. L. Coop, H. O. Menlove et al., Nucl. Phys. A 94, 176 (1967)

  • [118]

    C. S. Khurana and H. S. Hans, Nucl. Phys. 28, 560-569 (1961)

  • [119]

    W. Lu, N. RanaKumar, and R. W. Fink, Phys. Rev. C 1, 350 (1970)

  • [120]

    P. Reimer, V. Avrigeanu, S. V. Chuvaev et al., Phys. Rev. C 71, 44617 (2005)

  • [121]

    V. Semkova and R. Nolte, EPJ Web Conf., 66 (2014)

  • [122]

    S. Parashari, S. Mukherjee, and S. V. Suryanarayana, Phys. Rev. C 99, 44602 (2019)

  • [123]

    P. Strohal, N. Cindro, and B. Eman, Nucl. Phys. 30, 67 (1962)

  • [124]

    S. Amemiya, K. Ishibashi, and T. Katoh, J. Nucl. Sci. Technol. 19, 788 (1982)

  • [125]

    N. I. Molla, M. M. Rahman, S. Khatun, IAEA-RPRT-INDC(BAN)-00, 3/GI (1986)

  • [126]

    Z. Muyao, Z. Yongfa and W. Chuanshan, J. Nucl. Phys. 9, 34, 39 (1987)

  • [127]

    Y. Ikeda, C. Konno, K. Oishi et al., JAERI— 1312, 112 (1988)

  • [128]

    K. Xiangzhong, W. Yongchang, Y. Junqian et al., Chin. Phys. C 15, 549 (1991)

  • [129]

    K. T. Osman and F. I. Habbani, INDC(SUD)—00 1, 22 (1996)

  • [130]

    T. D. Thiep, N. Van Do, T. T. An et al., Nucl. Phys. A 722, 572 (2003)

  • [131]

    P. Cuzzocrea, E. Perillo, and S. Notarrigo, Nucl. Phys. A 103, 624 (1967)

  • [132]

    G. N. Maslov, F. Nasyrov, and N. F. Pashkin, INDC(CCP)- 42, 10 (1974)

  • [133]

    H. Atsumi, H. Miyade, M. Yoshida et al., NEANDC(J)- 106, 55 (1984)

  • [134]

    A. A. Filatenkov, S. V. Chuvaev, V. N. Aksenov et al., INDC(CCP)-0, 460 (1997)

  • [135]

    S. Badwar, R. Ghosh, B. M. Lawriniang et al., Appl. Radiat. Isot. 129, 123 (2017)

  • [136]

    S. P. Ram, J. Nair, S. V. Suryanarayana et al., Indian J. Pure Appl. Phys. 58, 357 (2020)

  • [137]

    S. P. Ram, J. Nair, S. V. Suryanarayana et al., J. Radioanal. Nucl. Chem. 325, 840 (2020)

  • [138]

    A. Marcinkowski, K. Stankiewicz, U. Garuska et al., Zeitschrift für Phys. A At. Nucl. 323, 96 (1986)

  • [139]

    C. V. S. Rao, N. L. Das, B. V. T. Rao et al., Phys. Scr. 24, 937 (1981)

  • [140]

    R. Pepelnik, B. Anders, B. M. Bahal et al., INDC(GER)- 28, 32 (1985)

  • [141]

    V. K. Tikku, H. Singh, and B. Sethi, BARC- 695, 22 (1973)

  • [142]

    S. C. Gujrathi and S. K. Mukherjee, Nucl. Phys. 85, 304 (1966)

  • [143]

    A. M. Sunitha, B. Rudraswamy, S. V. Suryanarayana et al., Indian J. Pure Appl. Phys. 58, 222 (2020)

  • [144]

    A. M. Sunitha, S. V. Suryanarayana, K. Nagaraja et al., J. Radioanal. Nucl. Chem. 326, 1390 (2020)

  • [145]

    A. Marcinkowski, K. Stankiewicz, U. Garuska et al., Zeitschrift fuer Phys. A, Hadron. Nucl. 323, 91 (1986)

  • [146]

    L. Chaturverdi, C. N. Pandey, and S. K. Bose, INDC(SEC)- 61, 123 (1977)

  • [147]

    O. I. Artem’ev, I. V. Kazachevskiy, V. N. Levkovskiy et al., At. Energiya 49, 195 (1980)

  • [148]

    N. I. Molla, R. U. Miah, S. Basunia et al. , p. 517 (1997)

  • [149]

    W. Lu, N. RanaKumar, and R. W. Fink, Phys. Rev. C 1, 361 (1970)

  • [150]

    I. Garlea, Chr. Miron-Garlea, H. N. Rosu et al., Rev. Roum. Phys. 37, 19 (1992)

  • [151]

    R. A. Sigg and P. K. Kuroda, J. Inorg. Nucl. Chem. 37, 636 (1975)

  • [152]

    I. Kimura and K. Kobayashi, Nucl. Sci. Eng. 106, 344 (1990)

  • [153]

    Z. Wenrong, L. Hanlin, Y. Weixiang et al., INDC (CPR) -0, 47/L (1998)

  • [154]

    H. Liskien, R. Wölfle, R. Widera et al., Int. J. Radiat. Appl. Instrumentation. Part A. Appl. Radiat. Isot. 41, 90 (1990)

  • [155]

    A. Grallert, J. Csikai, C. M. Buczko et al., INDC. 286, 131 (1993)

  • [156]

    I. Pasha, R. Basavanna, S. S. Yerranguntla et al., J. Radioanal. Nucl. Chem. 325, 868 (2020)

  • [157]

    I. Pasha, R. Basavanna, S. S. Yerranguntla et al., J. Radioanal. Nucl. Chem. 320, 568 (2019)

  • [158]

    Y. Fujino, M. Hyakutake, and I. Kumabe, NEANDC(J)- 51, p60 (1977)

  • [159]

    K. Fukuda, S. Matsuo, and I. Kumabe, NEANDC(J)- 56, 44 (1978)

  • [160]

    S. S. Hasan, R. Prasad, and M. L. Seghal, Nucl. Phys. A 181, 105 (1972)

  • [161]

    N. I. Molla, M. M. Rahman, S. Khatun et al., p. 295 (1986)

  • [162]

    K. T. Osman and F. I. Habbani, INDC(SUD)-, 1 (1996)