Highly Spin-Polarized Photoemission near Threshold from Physisorbed Xenon and Krypton Atoms

Schönhense G, Eyers A, Friess U, Schäfers F, Heinzmann U (1985)
Physical review letters 54(6): 547-550.

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By use of circularly polarized synchrotron radiation at BESSY, spin-polarized photoemission from the valence orbitals of Xe and Kr atoms adsorbed on the Pt(111) single-crystal surface has been studied. Under certain conditions almost complete photoelectron polarization parallel or antiparallel to the photon spin was observed, allowing a direct assignment of quantum numbers of the states involved. Highly resolved intensity and polarization spectra in the threshold region exhibit pronounced variations versus photon energy.
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Schönhense G, Eyers A, Friess U, Schäfers F, Heinzmann U. Highly Spin-Polarized Photoemission near Threshold from Physisorbed Xenon and Krypton Atoms. Physical review letters. 1985;54(6):547-550.
Schönhense, G., Eyers, A., Friess, U., Schäfers, F., & Heinzmann, U. (1985). Highly Spin-Polarized Photoemission near Threshold from Physisorbed Xenon and Krypton Atoms. Physical review letters, 54(6), 547-550. doi:10.1103/PhysRevLett.54.547
Schönhense, G., Eyers, A., Friess, U., Schäfers, F., and Heinzmann, U. (1985). Highly Spin-Polarized Photoemission near Threshold from Physisorbed Xenon and Krypton Atoms. Physical review letters 54, 547-550.
Schönhense, G., et al., 1985. Highly Spin-Polarized Photoemission near Threshold from Physisorbed Xenon and Krypton Atoms. Physical review letters, 54(6), p 547-550.
G. Schönhense, et al., “Highly Spin-Polarized Photoemission near Threshold from Physisorbed Xenon and Krypton Atoms”, Physical review letters, vol. 54, 1985, pp. 547-550.
Schönhense, G., Eyers, A., Friess, U., Schäfers, F., Heinzmann, U.: Highly Spin-Polarized Photoemission near Threshold from Physisorbed Xenon and Krypton Atoms. Physical review letters. 54, 547-550 (1985).
Schönhense, G., Eyers, A., Friess, U., Schäfers, F., and Heinzmann, Ulrich. “Highly Spin-Polarized Photoemission near Threshold from Physisorbed Xenon and Krypton Atoms”. Physical review letters 54.6 (1985): 547-550.
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11 Citations in Europe PMC

Data provided by Europe PubMed Central.

Electronic structure of large disc-type donors and acceptors.
Medjanik K, Kutnyakhov D, Nepijko SA, Schonhense G, Naghavi S, Alijani V, Felser C, Koch N, Rieger R, Baumgarten M, Mullen K., Phys Chem Chem Phys 12(26), 2010
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Spin-polarized photoelectrons excited by circularly polarized radiation from a nonmagnetic solid.
Starke K, Kaduwela AP, Liu Y, Johnson PD, Van Hove MA , Fadley CS, Chakarian V V, Chaban EE, Meigs G, Chen CT., Phys. Rev., B Condens. Matter 53(16), 1996
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Circular magnetic dichroism in spin-resolved Fe 3p photoemission.
Hillebrecht FU, Roth C, Rose HB, Finazzi M, Braicovich L., Phys. Rev., B Condens. Matter 51(14), 1995
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Spin-resolved photoemission from Xe on Pd(111) in the dilute phase: The model case of singly adsorbed atoms.
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Magnetic x-ray dichroism in core-level photoemission from ferromagnets.
Baumgarten L, Schneider CM, Petersen H, Schafers F, Kirschner J., Phys. Rev. Lett. 65(4), 1990
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Photoemission from Ar, Kr, and Xe on Pb(111).
Jacobi K., Phys. Rev., B Condens. Matter 38(9), 1988
PMID: 9947045
Determination of xenon valence and conduction bands by spin-polarized photoemission.
Kessler B, Eyers A, Horn K, Muller N, Schmiedeskamp B, Schonhense G, Heinzmann U., Phys. Rev. Lett. 59(3), 1987
PMID: 10035733
Schonhense and Heinzmann respond.
Schonhense G, Heinzmann U., Phys. Rev. Lett. 57(2), 1986
PMID: 10033769

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Data provided by Europe PubMed Central.

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