TY - JOUR
T1 - One Way to Verify the Molecular Picture of Exotic Hadrons
T2 - From DK to DDK/DD¯(∗)K
AU - Wu, Tian Wei
AU - Liu, Ming Zhu
AU - Geng, Li Sheng
N1 - Publisher Copyright:
© 2021, The Author(s), under exclusive licence to Springer-Verlag GmbH Austria, part of Springer Nature.
PY - 2021/9
Y1 - 2021/9
N2 - Starting from 2003, a large number of the so-called exotic hadrons, such as X(3872) and Ds0∗(2317), were discovered experimentally. Since then, understanding the nature of these states has been a central issue both theoretically and experimentally. As many of these states are located close to two hadron thresholds, they are believed to be molecular states or at least contain large molecular components. We argue that if they are indeed molecular states, in the way that the deuteron is a bound state of proton and neutron, then molecular states of three or more hadrons are likely, in the sense that atomic nuclei are bound states of nucleons. Following this conjecture, we study the likely existence of DDK, DD¯ K, and DD¯ ∗K molecular states. We show that within the theoretical uncertainties of the two-body interactions deduced, they most likely exist. Furthermore, we predict their strong decays to help guide future experimental searches. In addition, we show that the same approach can indeed reproduce some of the known three-body systems from the two-body inputs, such as the deuteron-triton and the Λ(1405) -K¯ NN systems.
AB - Starting from 2003, a large number of the so-called exotic hadrons, such as X(3872) and Ds0∗(2317), were discovered experimentally. Since then, understanding the nature of these states has been a central issue both theoretically and experimentally. As many of these states are located close to two hadron thresholds, they are believed to be molecular states or at least contain large molecular components. We argue that if they are indeed molecular states, in the way that the deuteron is a bound state of proton and neutron, then molecular states of three or more hadrons are likely, in the sense that atomic nuclei are bound states of nucleons. Following this conjecture, we study the likely existence of DDK, DD¯ K, and DD¯ ∗K molecular states. We show that within the theoretical uncertainties of the two-body interactions deduced, they most likely exist. Furthermore, we predict their strong decays to help guide future experimental searches. In addition, we show that the same approach can indeed reproduce some of the known three-body systems from the two-body inputs, such as the deuteron-triton and the Λ(1405) -K¯ NN systems.
UR - https://www.scopus.com/pages/publications/85111515082
U2 - 10.1007/s00601-021-01619-y
DO - 10.1007/s00601-021-01619-y
M3 - 文章
AN - SCOPUS:85111515082
SN - 0177-7963
VL - 62
JO - Few-Body Systems
JF - Few-Body Systems
IS - 3
M1 - 38
ER -