6. Conclusions
Photoelectron spectroscopy is probably the best practical realization of the theorist’s dream of probing the properties of a single particle in an interacting many-body system. Remarkably, although photoemission is certainly a “highenergy” spectroscopy, the large excitation energy does not destroy even subtle signatures of correlations. On the contrary, the close connection with the oneparticle Green’s function ensures that the spectrum carries momentum-resolved information at all the relevant energy scales, down to the low-lying excitations that shape the thermodynamic properties. It was the goal of this chapter to illustrate this simple but important idea, which is validated by recent experimental results both on model systems and on exciting new materials. This guideline, and the continuous improvements in experimental conditions, namely exploiting the unique properties of SR sources, holds promise for exciting future developments.
Keywords
- Fermi Surface
- Spectral Function
- Fermi Liquid
- Band Dispersion
- ARPES Data
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
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References
S.D. Kevan ed.-Angle-resolved Photoemission. Theory and current application-Elsevier, Amsterdam (1992)
S. Hüfner-Photoelectron Spectroscopy, Springer Verlag, Berlin (1995)
J.C. Fuggle & J.E. Inglesfield eds.-Unccupied Electronic States, Springer-Verlag (1992)
J.A.R. Samson-Techniques of Vacuum Ultraviolet Spectroscopy, J. Wiley and Sons, New York (1967)
C.N. Berglund & W.E. Spicer-Phys. Rev.136, A1044 (1964)
J.D. Denlinger, G.H. Gweon, J.W. Allen, C.G. Olson, M.B. Maple, J.L. Sarrao, P.E. Armstrong, Z. Fisk & H. Yamagami-J. Elec. Spec.117–118, 347 (2001)
G.D. Mahan-Many-Particle Physics, Plenum, New York (1981)
R.D Mattuck-A Guide to Feynman Diagrams in the Many-body Problem, 2nd ed., Mc Graw-Hill, New York (1976)
L. Hedin & S. Lundqvist-Solid State Physics23, 1 (1969)
I.W. Lyo & E.W. Plummer-Phys. Rev. Lett.60, 1558 (1988)
N.V. Smith, P. Thiry & Y. Petroff-Phys. Rev. B47, 15476 (1993)
J.J. Paggel, T. Miller & T.C. Chiang-Science283, 1709 (1999)
S. Hüfner, R. Claessen, F. Reinert, Th. Straub, V.N. Strocov & P. Steiner-J. Elec. Spec.100, 191 (1999)
L. Perfetti, C. Rojas, A. Reginelli, L. Gavioli, H. Berger, G. Margaritondo, M. Grioni, R. Gaal, L. Forro & F. Rullier-Albenque-Phys. Rev. B64, 115102 (2001)
M. Hengsberger, L. Frésard, D. Purdie, P. Segovia & Y. Baer-Phys. Rev. B60, 10796 (1999)
A. Lanzara, P.V. Bogdanov, X.J. Zhou, S.A. Kellar, D.L. Feng, E.D. Lu, T. Yoshida, H. Eisaki, A. Fujimori, K. Kishio, J.I. Shimoyama, T. Noda, S. Uchida, Z. Hussain & Z.X. Shen-Nature412, 510 (2001)
J.R. Schrieffer-Theory of Superconductivity, W.A. Benjamin, New York (1964)
G. Gruner-Density Waves in Solids, Addison-Wesley, Reading, Massachusets (1994)
M. Grioni, D. Malterre, B. Dardel, J.M. Imer, Y. Baer, J. Muller, J.L. Jorda & Y. Petroff-Phys. Rev. B43, 1216 (1991)
A. Damascelli, Z.X. Shen & Z. Hussain-Rev. Mod. Phys.75, 473 (2003).
I. Vobornik, H. Berger, L. Forro, M. Grioni, G. Margaritondo & F. Rullier-Albenque-Phys. Rev. B61, 11248 (2000)
H. Ding, M.R. Norman, J.C. Campuzano, M. Randeria, A.F. Bellman, T. Yokoya, T. Takahashi, T. Mochiku & K. Kadowaki-Phys. Rev. B54, R9678 (1996)
F. Reinert, G. Nicolay, B. Eltner, D. Ehm, S. Schmidt, S. Hüfner, U. Probst & E. Bucher-Phys. Rev. Lett.85, 3930 (2000)
H. Kumigashira, T. Sato, T. Yokoya, T. Takahashi, S. Yoshii & M. Kasaya-Phys. Rev. Lett.82, 1943 (1999)
C. Cepek, I. Vobornik, A. Goldoni, E. Magnano, G. Selvaggi, J. Kröger, G. Panaccione, G. Rossi & M. Sancrotti-Phys. Rev. Lett.86, 3100 (2001)
W.C. Tonjes, V.A. Greanya, R. Liu, C.G. Olson & P. Molinié-Phys. Rev. B63, 235101 (2001)
M. Grioni, I. Vobornik, F. Zwick & G. Margaritondo-J. Elec. Spec.100, 313 (1999)
T. Yokoya, T. Kiss, A. Chainani, S. Shin, M. Nohara & H. Takagi-Science294, 2518 (2001)
F. Zwick, D. Jérome, G. Margaritondo, M. Onellion, J. Voit & M. Grioni-Phys. Rev. Lett.81, 2974 (1998)
F. Zwick, H. Berger, I. Vobornik, G. Margaritondo, L. Forro, C. Beeli, M. Onellion, G. Panaccione, A. Taleb & M. Grioni-Phys. Rev. Lett.81, 1058 (1998)
F.D.M. Haldane-J. Phys. C14, 2585 (1981)
J. Voit-Rep. Prog. Phys.58, 977 (1995)
M. Grioni & J. voit-In “Electron Spectroscopies Applied to Low-Dimensional Materials”, H.P. Hughes & H.I. Starnberg eds., Kluwer, Dordrecht, 209 (2000)
C. Kim, A.Y. Matsuura, Z.X. Shen, N. Motoyama, H. Eisaki, S. Uchida, T. Tohyama & S. Maekawa-Phys. Rev. Lett.77, 4054 (1996)
M. Zacchigna, J. Almeida, I. Vobornik, G. Margaritondo, D. Malterre, B. Malaman & M. Grioni-Eur. Phys. J. B2, 463 (1998)
L.H. Tjeng, B. Sinkovic, N.B. Brookes, J.B. Goedkoop, R. Hesper, E. Pellegrin, F.M.F. de Groot, S. Altieri, S.L. Hulbert, E. Shekel & G.A. Sawatzky-Phys. Rev. Lett.78, 1126 (1997)
N.B. Brookes, G. Ghiringhelli, O. Tjernberg, L.H. Tjeng, T. Mizokawa, TW. Li & A.A. Menovsky-Phys. Rev. Lett.87, 237003 (2001)
A. Sekiyama, T. Iwasaki, K. Matsuda, Y. Saitoh, Y. Onuki & S. Suga-Nature403, 396 (2000)
D. Malterre, M. Grioni & Y. Baer-Adv. Phys.45, 299 (1996)
C. Dallera, L. Duò, G. Panaccione, G. Paolicelli, L. Braicovich & A. Palenzona-ESRF Highlights, 77 (2001).
O. Tjenberg, C. Dallera & N. Brookes-private communication.
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Grioni, M. (2006). Photoelectron Spectroscopy. In: Hippert, F., Geissler, E., Hodeau, J.L., Lelièvre-Berna, E., Regnard, JR. (eds) Neutron and X-ray Spectroscopy. Springer, Dordrecht. https://doi.org/10.1007/1-4020-3337-0_6
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