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Pole position of Λ(1405) measured in d(K−,n)πΣ reactions

Authors :
S. Aikawa
S. Ajimura
T. Akaishi
H. Asano
G. Beer
C. Berucci
M. Bragadireanu
P. Buehler
L. Busso
M. Cargnelli
S. Choi
C. Curceanu
S. Enomoto
H. Fujioka
Y. Fujiwara
T. Fukuda
C. Guaraldo
T. Hashimoto
R.S. Hayano
T. Hiraiwa
M. Iio
M. Iliescu
K. Inoue
Y. Ishiguro
S. Ishimoto
T. Ishikawa
K. Itahashi
M. Iwai
M. Iwasaki
K. Kanno
K. Kato
Y. Kato
S. Kawasaki
P. Kienle
Y. Komatsu
H. Kou
Y. Ma
J. Marton
Y. Matsuda
Y. Mizoi
O. Morra
R. Murayama
T. Nagae
H. Noumi
H. Ohnishi
S. Okada
Z. Omar
H. Outa
K. Piscicchia
Y. Sada
A. Sakaguchi
F. Sakuma
M. Sato
A. Scordo
M. Sekimoto
H. Shi
K. Shirotori
D. Sirghi
F. Sirghi
K. Suzuki
S. Suzuki
T. Suzuki
K. Tanida
H. Tatsuno
A.O. Tokiyasu
M. Tokuda
D. Tomono
A. Toyoda
K. Tsukada
O. Vazquez-Doce
E. Widmann
T. Yamaga
T. Yamazaki
H. Yim
Q. Zhang
J. Zmeskal
Source :
Physics Letters B, Vol 837, Iss , Pp 137637- (2023)
Publication Year :
2023
Publisher :
Elsevier, 2023.

Abstract

We measured a set of π±Σ∓, π0Σ0, and π−Σ0 invariant mass spectra below and above the K¯N mass threshold in K−-induced reactions on deuteron. The measured πΣ mass spectral shape is well reproduced via the two-step mechanism, i.e., a neutron knocked out at a forward angle from a deuteron by an incident K−, with the K¯ recoiled backward reacting with the residual nucleon to produce π and Σ. We deduced the S-wave K¯N→πΣ and K¯N→K¯N scattering amplitudes in the isospin 0 channel in the framework of a K¯N and πΣ coupled channel. We find that a resonance pole corresponding to Λ(1405) is located at 1417.7−7.4+6.0 (fitting errors)−1.0+1.1 (systematic errors) + [−26.1−7.9+6.0 (fitting errors)−2.0+1.7 (systematic errors)] i MeV/c2, closer to the K¯N mass threshold than the value determined by the Particle Data Group.

Details

Language :
English
ISSN :
03702693
Volume :
837
Issue :
137637-
Database :
Directory of Open Access Journals
Journal :
Physics Letters B
Publication Type :
Academic Journal
Accession number :
edsdoj.3cb78b7c45879e8237362265157b
Document Type :
article
Full Text :
https://doi.org/10.1016/j.physletb.2022.137637