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most citedThe basic K nuclear cluster K- pp and its enhanced formation in the p + p -> K+ + X reaction

192 citations · 199 across the 4 of their papers we have counts for

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nucl-th200819 cited

Kaonic Nuclear Systems KbarN and KbarNN as Decaying States

Y. Akaishi, K. S. Myint, T. Yamazaki

The formation spectra of model KbarN and KbarNN systems formed by (K-, n) reactions are investigated in order to obtain a theoretical basis for a proper interpretation of experimen…

nucl-th2007192 cited

The basic K nuclear cluster K- pp and its enhanced formation in the p + p -> K+ + X reaction

Toshimitsu Yamazaki, Yoshinori Akaishi

We have studied the structure of K- pp nuclear cluster comprehensively by solving this three-body system exactly in a variational method starting from the Ansatz that the Lambda(14…

nucl-th200738 cited

Super strong nuclear force caused by migrating Kbar mesons - Revival of the Heitler-London-Heisenberg scheme in kaonic nuclear clusters

Toshimitsu Yamazaki, Yoshinori Akaishi

We have studied the structure of K- pp comprehensively by solving this three-body system in a variational method, starting from the Ansatz that the Lambda(1405) resonance (~ Lambda…

nucl-th2006

Enhanced formation of a dense Kbar nuclear cluster K^- pp in pp collisions - Lambda*-p doorway dominance

Toshimitsu Yamazaki, Yoshinori Akaishi

We have found theoretically that the elementary process, p + p to K+ + Lambda(1405) + p, which occurs in a short impact parameter (around 0.2 fm) and with a large momentum transfer…

nucl-th2005

Strange tribaryons as Kbar-mediated dense nuclear systems

Y. Akaishi, A. Dote, T. Yamazaki

We discuss the implications of recently discovered strange tribaryons in 4He(stopped-K-, p)S0 (3115) and 4He(stopped-K, n) S1 (3140) within the framework of deeply bound kbar state…

nucl-th2003

Kaonic nuclei studied based on a new framework of Antisymmetric Molecular Dynamics

Akinobu Dote, Hisashi Horiuchi, Yoshinori Akaishi +1

We have developed a new framework of Antisymmetrized Molecular Dynamics (AMD), to adequately treat the I=0 KN interaction, which is essential to study kaonic nuclei. The improved p…