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Published byValentine Kelley Modified over 9 years ago
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Measurements of the 27 Al(d, ) 25 Mg excitation functions A. Gurbich Institute of Physics and Power Engineering Obninsk, Russia
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Determination of the target thickness RBSPIGE
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A typical spectrum of -particles for 27 Al(d, ) 25 Mg reaction
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The excitation functions for 27 Al(d, ) 25 Mg reaction
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The comparison of the present results with other data for 27 Al(d, 0 ) 25 Mg
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The comparison of the present results with Pellegrino’s data for 27 Al(d, 2 ) 25 Mg
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Measurements of the 27 Al(d,p) 28 Al excitation functions
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A typical spectrum of protons for the 27 Al(d,p) 28 Al reaction
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The excitation functions for 27 Al(d,p) 28 Al reaction
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The comparison of the present results with other data for 27 Al(d, p 0+1 ) 28 Al
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The comparison of the present results with other data for 27 Al(d, p 2+3 ) 28 Al
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Benchmark
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Measurements of the 27 Al(p, ) 28 Si thick target yield
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A typical pulse-height spectrum for -rays emitted in p + 27 Al reaction p E =1779 keV E =10764 keV 1779 keV 12543keV 28 Si 27 Al
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The p + 27 Al - ray yield for E =9-11 MeV
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Measurements of the 14 N(d, ) 12 C excitation functions
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Experimental details Target: C 5 H 5 N 5 (~1.4 10 18 cm -2 ) evaporated on the silver backing 0.3 mg/cm 2 thick. Normalization: at 972 keV against Davies J.A., Jackman T.E., Plattner, H., Bubb I. Absolute calibration of 14 N(d, ) and 14 N(d,p) reactions for surface adsorption studies. // Nucl. Instr. and Meth. 218 (1983) 141.
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Typical d + 14 N spectrum (12 m aluminum filtering foil, low bias voltage)
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The excitation functions for the 14 N(d, ) 12 C reaction
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Measurements of the 14 N(d,p) 15 N excitation functions
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Typical d + 14 N spectrum (300 m aluminum filtering foil)
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The excitation functions for the 14 N(d,p) 15 N reaction
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