${{\mathit N}{(2120)}}$ BREIT-WIGNER WIDTH INSPIRE search

B024W
VALUE (MeV) DOCUMENT ID TECN  COMMENT
$\bf{ 260\text{ to }360\text{ }(\approx300) }$ OUR ESTIMATE
$360$ $\pm35$
SARANTSEV
2025
DPWA Multichannel
$503$ $\pm62$ 1
HUNT
2019
DPWA Multichannel
$300$ $\pm100$
CUTKOSKY
1980
IPWA ${{\mathit \pi}}$ ${{\mathit N}}$ $\rightarrow$ ${{\mathit \pi}}{{\mathit N}}$ (higher $\mathit m$)
$265$ $\pm40$
HOEHLER
1979
IPWA ${{\mathit \pi}}$ ${{\mathit N}}$ $\rightarrow$ ${{\mathit \pi}}{{\mathit N}}$
• • • We do not use the following data for averages, fits, limits, etc. • • •
$340$ $\pm35$
SOKHOYAN
2015A
DPWA Multichannel
$340$ $\pm35$
GUTZ
2014
DPWA Multichannel
1  Statistical error only.
  References:
SARANTSEV 2025
PR C112 015202 Decays of $N^*$ and $?^*$ resonances into $N?$, $??$, and $N?$
HUNT 2019
PR C99 055205 Updated determination of $N^*$ resonance parameters using a unitary, multichannel formalism
SOKHOYAN 2015A
EPJ A51 95 High-Statistics Study of the Reaction ${{\mathit \gamma}}$ ${{\mathit p}}$ $\rightarrow$ ${{\mathit p}}$2 ${{\mathit \pi}^{0}}$
GUTZ 2014
EPJ A50 74 High Statistics Study of the Reaction 
CUTKOSKY 1980
Toronto Conf. 19 Pion $−$ Nucleon Partial Wave Analysis
Also
PR D20 2839 Pion Nucleon Partial Wave Amplitudes
HOEHLER 1979
PDAT 12-1 Handbook of Pion Nucleon Scattering
Also
Toronto Conf. 3 The Karlsruhe-Helsinki ${{\mathit \pi}}{{\mathit N}}$ Elastic Partial Wave Analysis