Yıl 2017,
Cilt: 3 Sayı: 1, 47 - 49, 15.07.2017
Nilgün Demir
,
Ayşe Kıvrak
Mahmut Üstün
Alp Cesur
İsmail Boztosun
Kaynakça
- C. Engelmann, (1964),.French Commissariat a L‘Energie Atomique, Report CEA-R 2559, Saclay, France, July.
- P. Albert, Proc. (1961). International Conf. on Modern Trends in Activation Analysis, College Station, Texas, Dec., 78-85.
- P. Mohr, J. Enders, T. Hartmann, H. Kaiser, D. Schiesser, S. Schmitt, S. Volz, F. Wissel, A. Zilges, (1999). Real Photon Scattering up to 10 MeV: the improved facility at the Darmstadt electron accelerator S-DALINAC, Nucl. Instrum. Methods Phys. Res. A 423, 480.
- K. Sonnabend, D. Savran, J. Beller, M. B¨ussing, A. Constantinescu, M. Elvers, J. Endres, M. Fritzsche, J. Glorius, J. Hasper, J. Isaak, B. L¨oher, S. M¨uller, N. Pietralla, C. Romig, A. Sauerwein, L. Schnorrenberger, C. W¨alzlein, A. Zilges, M.Zweidinger, (2011). The Darmstadt High-Intensity Photon Setup (DHIPS) at the S-DALINAC, Nucl. Instrum. Methods Phys. Res. A 640, 6.
- R. Schwengner, R. Beyer, F. D ̈onau, E. Grosse, A. Hartmann, A. Junghans, S. Mallion, G. Rusev, K. Schilling, W. Schulze, A. Wagner, (2005). Nucl. Instrum. Methods Phys. Res. A 555, 211.
- P. Mohr, S. Brieger, G. Witucki and M. Maetz, (2007). Photoactivation at a Clinical LINAC: The 197Au(γ, n) 196Au Reaction Slightly Above Threshold, Nucl. Instrum. Meth. A, 580, 1201-1208.
- I. Boztosun, H.Dapo, S.F.Özmen, Y. Çeçen, M.Karakoç, A.Çoban, A.Cesur, T.Caner, E.Bayram, G.B.Keller, B.Küçük, A.Guvendi, M.DermaN, D.Kaya, (2014). The results of the first photonuclear reaction performed in Turkey: the zinc example. Turk. J. Phys. 38, 1–9.
- I.Boztosun, H.Dapo, M.Karakoç, S.F.Özmen, Y.Çeçen, A.Çoban, T.Caner, E.Bayram, T.R.Saito, T.Akdoğan, V.Bozkurt, Y.Kuçuk, D.Kaya, M.N.Harakeh, (2015). Photonuclear reactions with zinc: a case for clinical linacs. Eur. Phys. J. 130, 185.
- D. Radford, (1995). Nucl. Instrum. Methods Phys. Res. A 361, 297.
- R.Brun, F.Rademakers, (1997). ROOT: an object oriented data analysis framework. Nucl. Instr. Methods A 389, 81–86.
- NuDat 2.6, 2016, http://www.nndc.bnl.gov/nudat2/.
- Elekta, Elekta Digital Accelerator, Technical Training Guide, 2003, https://www. elekta.com/services/education-and-training.html.
- M. J. Martin (2013). Nucl. Data Sheets, 114-1497.
- S. K. Basu, A. A. Sonzogni (2013). Nucl. Data Sheets, 114-435.
- MAESTRO,A65-b32-maestro-32-emulation software.
Experimental Study for the Energy Levels of Europium by the Clinic LINAC
Yıl 2017,
Cilt: 3 Sayı: 1, 47 - 49, 15.07.2017
Nilgün Demir
,
Ayşe Kıvrak
Mahmut Üstün
Alp Cesur
İsmail Boztosun
Öz
It has
been investigated the energy levels of 150Eu and 152Eu
radioisotopes. In this purpose, the
Europium Oxide (99,9% purely) sample has been activated by the bremsstrahlung
photon beam of 18 MeV end-point energies produced by the clinical electron
linear accelerator (cLINAC) at Akdeniz University Nuclear Research and
Application Center. The obtained experimental results are in good agreement
with the NUDAT database.
Kaynakça
- C. Engelmann, (1964),.French Commissariat a L‘Energie Atomique, Report CEA-R 2559, Saclay, France, July.
- P. Albert, Proc. (1961). International Conf. on Modern Trends in Activation Analysis, College Station, Texas, Dec., 78-85.
- P. Mohr, J. Enders, T. Hartmann, H. Kaiser, D. Schiesser, S. Schmitt, S. Volz, F. Wissel, A. Zilges, (1999). Real Photon Scattering up to 10 MeV: the improved facility at the Darmstadt electron accelerator S-DALINAC, Nucl. Instrum. Methods Phys. Res. A 423, 480.
- K. Sonnabend, D. Savran, J. Beller, M. B¨ussing, A. Constantinescu, M. Elvers, J. Endres, M. Fritzsche, J. Glorius, J. Hasper, J. Isaak, B. L¨oher, S. M¨uller, N. Pietralla, C. Romig, A. Sauerwein, L. Schnorrenberger, C. W¨alzlein, A. Zilges, M.Zweidinger, (2011). The Darmstadt High-Intensity Photon Setup (DHIPS) at the S-DALINAC, Nucl. Instrum. Methods Phys. Res. A 640, 6.
- R. Schwengner, R. Beyer, F. D ̈onau, E. Grosse, A. Hartmann, A. Junghans, S. Mallion, G. Rusev, K. Schilling, W. Schulze, A. Wagner, (2005). Nucl. Instrum. Methods Phys. Res. A 555, 211.
- P. Mohr, S. Brieger, G. Witucki and M. Maetz, (2007). Photoactivation at a Clinical LINAC: The 197Au(γ, n) 196Au Reaction Slightly Above Threshold, Nucl. Instrum. Meth. A, 580, 1201-1208.
- I. Boztosun, H.Dapo, S.F.Özmen, Y. Çeçen, M.Karakoç, A.Çoban, A.Cesur, T.Caner, E.Bayram, G.B.Keller, B.Küçük, A.Guvendi, M.DermaN, D.Kaya, (2014). The results of the first photonuclear reaction performed in Turkey: the zinc example. Turk. J. Phys. 38, 1–9.
- I.Boztosun, H.Dapo, M.Karakoç, S.F.Özmen, Y.Çeçen, A.Çoban, T.Caner, E.Bayram, T.R.Saito, T.Akdoğan, V.Bozkurt, Y.Kuçuk, D.Kaya, M.N.Harakeh, (2015). Photonuclear reactions with zinc: a case for clinical linacs. Eur. Phys. J. 130, 185.
- D. Radford, (1995). Nucl. Instrum. Methods Phys. Res. A 361, 297.
- R.Brun, F.Rademakers, (1997). ROOT: an object oriented data analysis framework. Nucl. Instr. Methods A 389, 81–86.
- NuDat 2.6, 2016, http://www.nndc.bnl.gov/nudat2/.
- Elekta, Elekta Digital Accelerator, Technical Training Guide, 2003, https://www. elekta.com/services/education-and-training.html.
- M. J. Martin (2013). Nucl. Data Sheets, 114-1497.
- S. K. Basu, A. A. Sonzogni (2013). Nucl. Data Sheets, 114-435.
- MAESTRO,A65-b32-maestro-32-emulation software.