Probing confinement resonances by photoionizing Xe inside a C-60(+) molecular cage

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AMER PHYSICAL SOC

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info:eu-repo/semantics/openAccess

Özet

Double photoionization accompanied by loss of n C atoms (n = 0, 2, 4, 6) was investigated by merging beams of Xe@C-60(+) ions and synchrotron radiation and measuring the yields of product ions. The giant 4d dipole resonance of the caged Xe atom has a prominent signature in the cross section for these product channels, which together account for 6.2 +/- 1.4 of the total Xe 4d oscillator strength of 10. Compared to that for a free Xe atom, the oscillator strength is redistributed in photon energy due to multipath interference of outgoing Xe 4d photoelectron waves that may be transmitted or reflected by the spherical C-60(+) molecular cage, yielding so-called confinement resonances. The data are compared with an earlier measurement and with theoretical predictions for this single-molecule photoelectron interferometer system. Relativistic R-matrix calculations for the Xe atom in a spherical potential shell representing the fullerene cage show the sensitivity of the interference pattern to the molecular geometry.

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Anahtar Kelimeler

ELECTRON-IMPACT, PHOTOABSORPTION, FULLERENES, ATOMS

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PHYSICAL REVIEW A

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Scopus Q Değeri

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88

Sayı

5

Künye

Phaneuf, RA., Kilcoyne, ALD., Aryal, NB., Baral, KK., Esteves-Macaluso, DA., Thomas, CM., Hellhund, J., Lomsadze, R., Gorczyca, TW., Ballance, CP., Manson, ST., Hasoglu, MF., Schippers, S., & Muller, A. (November, 1, 2013). Probing confinement resonances by photoionizing Xe inside a C-60(+) molecular cage. PHYSICAL REVIEW A, 88, 5.

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