We report on a new measurement of 14N(p,γ)15O for the ground state capture transition at Ep = 360, 380 and 400 keV, using the 400 kV LUNA accelerator. The true coincidence summing effect—the major source of error in the ground state capture determination—has been significantly reduced by using a Clover-type gamma detector.

Ground state capture in 14N(p,g)15O studied above the 259 keV resonance at LUNA / H. P., T., D., B., R., B., C., B., A., C., F., C., P., C., H., C., Z., E., A., F., Zs, F., G., G., A., G., Gy, G., C., G., Imbriani, G., M., J., A., L., Limata, B.N., M., M., et al.. - In: JOURNAL OF PHYSICS. G, NUCLEAR AND PARTICLE PHYSICS. - ISSN 0954-3899. - STAMPA. - 35:1(2008), pp. 014019-014019. [10.1088/0954-3899/35/1/014019]

Ground state capture in 14N(p,g)15O studied above the 259 keV resonance at LUNA

IMBRIANI, GIANLUCA;LIMATA, BENEDICTA NORMANNA;ROCA, VINCENZO;
2008

Abstract

We report on a new measurement of 14N(p,γ)15O for the ground state capture transition at Ep = 360, 380 and 400 keV, using the 400 kV LUNA accelerator. The true coincidence summing effect—the major source of error in the ground state capture determination—has been significantly reduced by using a Clover-type gamma detector.
2008
Ground state capture in 14N(p,g)15O studied above the 259 keV resonance at LUNA / H. P., T., D., B., R., B., C., B., A., C., F., C., P., C., H., C., Z., E., A., F., Zs, F., G., G., A., G., Gy, G., C., G., Imbriani, G., M., J., A., L., Limata, B.N., M., M., et al.. - In: JOURNAL OF PHYSICS. G, NUCLEAR AND PARTICLE PHYSICS. - ISSN 0954-3899. - STAMPA. - 35:1(2008), pp. 014019-014019. [10.1088/0954-3899/35/1/014019]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/329290
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