The need for new surface specific probes of magnetism is very high. The ideal surface magnetic probe should be selectively sensitive to surface, subsurface and interface layers, atom-specific and site specific, i.e. sensitive to the local environment of the excited atom, an should provide an absolute measure of the magnetic moment associated to the selected atoms. The field of surface magnetism has been opened by the application of spin-polarimetry to photoelectrons and to the secondary electron yield.[1] The measure of spin polarization (SP) of secondaries is intrinsically surface sensitive due to the short escape depth for low energy photoelectrons in ferromagnets, and can be understood semi-quantitatively.[2] The magnetic resolution of SP is high and can be used for imaging surface magnetic domains[3] and for studying the dynamics of surface magnetism with time resolution in the picosecond range in laser experiments,[4] or in the nanosecond range in synchrotron radiation experiments.[5] SP of secondaries probes the average magnetization and cannot be made atom-specific without independent knowledge on the atomic structure. [6] Spin Polarized Low Energy Electron Diffraction is very surface sensitive,[7] but it is limited to ordered surfaces, and is not atom specific. The magneto-optic Kerr effect [8] is not surface sensitive and can be applied only to the study of ferromagnetic order in monolayers on non magnetic substrates.

Linear Magnetic Dichroism in Directional Photoemission from Core Levels and Valence Bands / G. Rossi, F. Sirotti, G. Panaccione (NATO ASI SERIES. SERIES B: PHYSICS). - In: Core Level Spectroscopies for Magnetic Phenomena : Theory and Experiment / [a cura di] P.S. Bagus, G. Pacchioni, F. Parmigiani. - Prima edizione. - [s.l] : Springer, 1995. - ISBN 9781475798739. - pp. 181-201 (( convegno NATO Advanced Study Institute on Core Level Spectroscopies for Magnetic Phenomena - Theory and Experiment tenutosi a Erice nel 1994 [10.1007/978-1-4757-9871-5_11].

Linear Magnetic Dichroism in Directional Photoemission from Core Levels and Valence Bands

G. Rossi
Primo
;
1995

Abstract

The need for new surface specific probes of magnetism is very high. The ideal surface magnetic probe should be selectively sensitive to surface, subsurface and interface layers, atom-specific and site specific, i.e. sensitive to the local environment of the excited atom, an should provide an absolute measure of the magnetic moment associated to the selected atoms. The field of surface magnetism has been opened by the application of spin-polarimetry to photoelectrons and to the secondary electron yield.[1] The measure of spin polarization (SP) of secondaries is intrinsically surface sensitive due to the short escape depth for low energy photoelectrons in ferromagnets, and can be understood semi-quantitatively.[2] The magnetic resolution of SP is high and can be used for imaging surface magnetic domains[3] and for studying the dynamics of surface magnetism with time resolution in the picosecond range in laser experiments,[4] or in the nanosecond range in synchrotron radiation experiments.[5] SP of secondaries probes the average magnetization and cannot be made atom-specific without independent knowledge on the atomic structure. [6] Spin Polarized Low Energy Electron Diffraction is very surface sensitive,[7] but it is limited to ordered surfaces, and is not atom specific. The magneto-optic Kerr effect [8] is not surface sensitive and can be applied only to the study of ferromagnetic order in monolayers on non magnetic substrates.
Spin Polarization; Core Level; Ferromagnetic Order; Magnetic Sublevel; Photoemission Experiment
Settore FIS/03 - Fisica della Materia
1995
Book Part (author)
File in questo prodotto:
Non ci sono file associati a questo prodotto.
Pubblicazioni consigliate

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/802094
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus ND
  • ???jsp.display-item.citation.isi??? 2
  • OpenAlex ND
social impact