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Modern Physics  2023, Vol. 36 Issue (3): 9-14    DOI:
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. [J]. Modern Physics, 2023, 36(3): 9-14.
 
[1] Zhong, S., Y. Liang, S. Wang, H. Teng, X. He, and Z. Wei, High harmonic generation and application for photoemission spectroscopy in condensed matter. Materials Futures, 2022. 1(3): 032201.
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[4] Neppl, S., R. Ernstorfer, E.M. Bothschafter, A.L. Cavalieri, D. Menzel, J.V. Barth, F. Krausz, R. Kienberger, and P. Feulner, Attosecond time-resolved photoemission from core and valence states of magnesium. Physical Review Letters, 2012. 109(8): 087401.
[5] Neppl, S., R. Ernstorfer, A.L. Cavalieri, C. Lemell, G. Wachter, E. Magerl, E.M. Bothschafter, M. Jobst, M. Hofstetter, U. Kleineberg, J.V. Barth, D. Menzel, J. Burgdorfer, P. Feulner, F. Krausz, and R. Kienberger, Direct observation of electron propagation and dielectric screening on the atomic length scale. Nature, 2015. 517(7534): 342-346.
[6] Siek, F., S. Neb, P. Bartz, M. Hensen, C. Strüber, S. Fiechter, M. Torrent- Sucarrat, V.M. Silkin, E.E. Krasovskii, N.M. Kabachnik, S. Fritzsche, R.D. Muiño, P.M. Echenique, A.K. Kazansky, N. Müller, W. Pfeiffer, and U. Heinzmann, Angular momentum- induced delays in solid-state photoemission enhanced by intra-atomic interactions. Science, 2017. 357(6357): 1274-1277.
[7] Locher, R., L. Castiglioni, M. Lucchini, M. Greif, L. Gallmann, J. Osterwalder, M. Hengsberger, and U. Keller, Energy- dependent photoemission delays from noble metal surfaces by attosecond interferometry. Optica, 2015. 2(5): 405.
[8] Tao, Z., C. Chen, T. Szilvási, M. Keller, M. Mavrikakis, H. Kapteyn, and M. Murnane, Direct time-domain observation of attosecond final-state lifetimes in photoemission from solids. Science, 2016. 353(6294): 62-67.
[9] Chen, C., Z. Tao, A. Carr, P. Matyba, T. Szilvási, S. Emmerich, M. Piecuch, M. Keller, D. Zusin, S. Eich, M. Rollinger, W. You, S. Mathias, U. Thumm, M. Mavrikakis, M. Aeschlimann, P.M. Oppeneer, H. Kapteyn, and M. Murnane, Distinguishing attosecond electron-electron scattering and screening in transition metals. Proceedings of the National Academy of Sciences, 2017. 114(27): E5300-E5307.
[10] Jager, M.F., C. Ott, C.J. Kaplan, P.M. Kraus, D.M. Neumark, and S.R. Leone, Attosecond transient absorption instrumentation for thin film materials: Phase transitions, heat dissipation, signal stabilization, timing correction, and rapid sample rotation. Review of Scientific Instruments, 2018. 89(1): 013109.
[11] Geneaux, R., C.J. Kaplan, L. Yue, A.D. Ross, J.E. Baekhoj, P.M. Kraus, H.T. Chang, A. Guggenmos, M.Y. Huang, M. Zurch, K.J. Schafer, D.M. Neumark, M.B. Gaarde, and S.R. Leone, Attosecond Time-Domain Measurement of Core-Level-Exciton Decay in Magnesium Oxide. Physical Review Letters, 2020. 124(20): 207401.
[12] Lucarelli, G.D., B. Moio, G. Inzani, N. Fabris, L. Moscardi, F. Frassetto, L. Poletto, M. Nisoli, and M. Lucchini, Novel beamline for attosecond transient reflection spectroscopy in a sequential two-foci geometry. Review of Scientific Instruments, 2020. 91(5): 053002.
[13] Lucchini, M., Sato, S.A., Lucarelli, G.D., Moio, B., Inzani, G., Borrego- Varillas, R., Frassetto, F., Poletto, L., Hubener, H., De Giovannini, U., Rubio, A., and Nisoli, M. Unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy[J]. Nature Communication, 2021. 12(1): 1021.
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