1989
DOI: 10.1007/bf01550930
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Experimental test of the PCAC hypothesis in the reactionsv ? p? ?? p?+ and $$ \bar v_\mu p \to \mu ^ + p\pi ^ - $$ in the?(1232) region

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Cited by 10 publications
(11 citation statements)
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“…Indeed, a comparison of the axial form factors for the nucleon and for the N-∆ transition strongly favor an N-∆ axial form factor that is significantly harder than that of the nucleon. In fact, the former is best fit by a 1.3 GeV dipole, while the latter by a 1.02 GeV dipole parameterization [42]. Within the framework of PCAC these form factors are directly related to the corresponding form factors for pion emission or absorption [43].…”
Section: Chiral Symmetry and The Meson Cloudmentioning
confidence: 99%
“…Indeed, a comparison of the axial form factors for the nucleon and for the N-∆ transition strongly favor an N-∆ axial form factor that is significantly harder than that of the nucleon. In fact, the former is best fit by a 1.3 GeV dipole, while the latter by a 1.02 GeV dipole parameterization [42]. Within the framework of PCAC these form factors are directly related to the corresponding form factors for pion emission or absorption [43].…”
Section: Chiral Symmetry and The Meson Cloudmentioning
confidence: 99%
“…The relative contributions of the πN and π∆ components are determined partly by the πNN and πN∆ vertex form factors. The most direct way to constrain these is through a comparison with the axial form factors for the nucleon and for the N-∆ transition [19]. Within the framework of PCAC the axial form factors are directly related to those corresponding to pion emission or absorption.…”
Section: Light Antiquark Asymmetrymentioning
confidence: 99%
“…Within the framework of PCAC the axial form factors are directly related to those corresponding to pion emission or absorption. The data on the axial form factors are best fit, in a dipole parameterization, by a 1.3 (1.02) GeV dipole for the axial N (N-∆ transition) form factor [19], which gives a pion probability in the proton of ≈ 13% (10%). The resultingd/ū ratio is shown in Fig.…”
Section: Light Antiquark Asymmetrymentioning
confidence: 99%
“…cp* [12] ohne besonderen Aufwand durchfu È hrbar [13]. Die Oxidation des Komplexes mit Halogen fu È hrt zu Decamethylferroceniumpolyhalogeniden, von denen bisher nur das Decamethylferroceniumtribromid [14] und neuerdings, in unabha È ngig von uns durchgefu È hrten Untersuchungen, auch das Decamethylferroceniumtriiodid [15] bekannt ist. Ûber halogenreichere Polyiodide des Decamethylferrocens gibt es bisher keine Angaben.…”
Section: Studies On Polyhalides 30unclassified
“…Da Polyiodide bereits wenig vera È nderter Kationen in der Regel andersartige Zusammensetzungen und Vernetzungsmuster zeigen, die von isolierten Polyiodideinheiten, insbesondere bei den Triiodiden, u È ber Ketten, Ba È nder und Schichten bis hin zu Raumnetz-artigen Geru È sten mit Einschluûcharakter bei den iodreichen Verbindungen fu È hren, erwarten wir im Vergleich mit den Ferroceniumpolyiodiden auch anders zusammengesetzte und strukturell vo È llig verschieden aufgebaute Verbindungen [16]. Wir stellen hier die Strukturen der beiden neuen iodreicheren Verbindungen vor und teilen erga È nzend zu den bereits bekannten Tieftemperaturdaten fu È r das Triiodid [15] die von uns parallel bei Raumtemperatur ermittelte Kristallstruktur mit.…”
Section: Studies On Polyhalides 30unclassified