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Direct probing of the cluster structure in $$^{12}$$Be via the $$alpha$$-knockout reaction

Lyu, M.*; Yoshida, Kazuki; Enyo, Yoshiko*; Ogata, Kazuyuki*

Our objective is to provide direct probing of the $$alpha$$-cluster formation in the $$^{12}$$Be target through associating the structure information obtained by a microscopic theory with the experimental observables of $$alpha$$-knockout reactions. We formulate a new wave function of the Tohsaki-Horiuchi-Schuck-R$"o$pke type for the structure of $$^{12}$$Be and adopt it to the distorted wave impulse approximation framework for the knockout reaction calculation. We reproduced the low-lying spectrum of $$^{12}$$Be, and the knockout cross section is theoretically predicted.

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