In-beam experiment with the γ-ray tracking detector MARS
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The feasibility of the entire process of me=""mml22"">method=retrieve&_udi=B6TJM-4RBYFTB-2&_mathId=mml22&_user=10&_cdi=5314&_rdoc=7&_acct=C000050221&_version=1&_userid=10&md5=874db639686bad08ba1005d6463fd162"" title=""Click to view the MathML source"">γ-ray tracking is demonstrated experimentally for the first time. The accuracy of the results is verified by the capability to carry out a Doppler correction of me=""mml23"">method=retrieve&_udi=B6TJM-4RBYFTB-2&_mathId=mml23&_user=10&_cdi=5314&_rdoc=7&_acct=C000050221&_version=1&_userid=10&md5=4a9c27d5f7c7c691027fa832788c6f2f"" title=""Click to view the MathML source"">γ-rays emitted in flight. The resolution of the 846.8 keV transition detected with the MARS detector after Coulomb excitation of a 56Fe beam could be improved from approximately 16 up to 4.6 keV (FWHM). This result corresponds to an obtained position resolution of about 6 mm (FWHM).

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