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${{\mathit N}}$ BARYONS ($\mathit S$ = 0, $\mathit I$ = 1/2)
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${{\mathit N}{(1860)}}$
>
REAL PART
${{\mathit N}{(1860)}}$ POLE POSITION
REAL PART
INSPIRE search
B009RE
VALUE
(MeV)
DOCUMENT ID
TECN
COMMENT
$1834$ $\pm19$ $\pm6$
1
SVARC
2014
L+P
${{\mathit \pi}}$ ${{\mathit N}}$ $\rightarrow$ ${{\mathit \pi}}{{\mathit N}}$
$1830$ ${}^{+120}_{-60}$
ANISOVICH
2012
A
DPWA
Multichannel
• • • We do not use the following data for averages, fits, limits, etc. • • •
$1871$
HUNT
2019
DPWA
Multichannel
$1807$
ARNDT
2006
DPWA
${{\mathit \pi}}$ ${{\mathit N}}$ $\rightarrow$ ${{\mathit \pi}}{{\mathit N}}$, ${{\mathit \eta}}{{\mathit N}}$
1
Fit to the amplitudes of
HOEHLER 1979
.
References:
HUNT
2019
PR C99 055205
Updated determination of $N^*$ resonance parameters using a unitary, multichannel formalism
SVARC
2014
PR C89 045205
Poles of Karlsruhe-Helsinki KH80 and KA84 Solutions Extracted by using the Laurent-Pietarinen Method
ANISOVICH
2012A
EPJ A48 15
Properties of Baryon Resonances from a Multichannel Partial Wave Analysis
ARNDT
2006
PR C74 045205
Extended Partial-Wave Analysis of ${{\mathit \pi}}{{\mathit N}}$ Scattering Data