Low energy electron microscopy at cryogenic temperatures.
暂无分享,去创建一个
[1] F. Kronast,et al. Layer-Dependent Magnetic Domains in Atomically Thin Fe5GeTe2 , 2022, ACS nano.
[2] S. J. van der Molen,et al. Low-Energy Electron Irradiation Damage in Few-Monolayer Pentacene Films , 2021, The journal of physical chemistry. C, Nanomaterials and interfaces.
[3] T. Taniuchi,et al. Discovery of mesoscopic nematicity wave in iron-based superconductors , 2021, Science.
[4] I. Valmianski,et al. Driving magnetic domains at the nanoscale by interfacial strain-induced proximity. , 2021, Nanoscale.
[5] A. Gloskovskii,et al. Temperature-dependent change of the electronic structure in the Kondo lattice system YbRh2Si2 , 2021, Journal of physics. Condensed matter : an Institute of Physics journal.
[6] R. Tromp,et al. Aberration corrected spin polarized low energy electron microscope. , 2020, Ultramicroscopy.
[7] A. Gloskovskii,et al. Progress in HAXPES performance combining full-field k-imaging with time-of-flight recording , 2019, Journal of synchrotron radiation.
[8] A. Gloskovskii,et al. High-accuracy bulk electronic bandmapping with eliminated diffraction effects using hard X-ray photoelectron momentum microscopy , 2019, Communications Physics.
[9] M. V. Muftakhov,et al. Decomposition of Aromatic Compounds Relevant to Organic Electronics under Exposure to Low-Energy Electrons , 2018, Technical Physics.
[10] Alemayehu S. Admasu,et al. Patterning-Induced Ferromagnetism of Fe3GeTe2 van der Waals Materials beyond Room Temperature. , 2018, Nano letters.
[11] K. Murata,et al. Cryo-electron microscopy for structural analysis of dynamic biological macromolecules. , 2018, Biochimica et biophysica acta. General subjects.
[12] G. Schönhense,et al. Direct 3D mapping of the Fermi surface and Fermi velocity. , 2017, Nature materials.
[13] S. J. van der Molen,et al. Quantifying electronic band interactions in van der Waals materials using angle-resolved reflected-electron spectroscopy , 2016, Nature Communications.
[14] S. J. van der Molen,et al. Imaging pulsed laser deposition growth of homo-epitaxial SrTiO3 by low-energy electron microscopy , 2016, Nanotechnology.
[15] A. Schmid,et al. Magnetism of epitaxial Tb films on W(110) studied by spin-polarized low-energy electron microscopy , 2016, 1610.10012.
[16] T. Puig,et al. Encoding Magnetic States in Monopole‐Like Configurations Using Superconducting Dots , 2016, Advanced science.
[17] H. Hibino,et al. Growth and low-energy electron microscopy characterizations of graphene and hexagonal boron nitride , 2016 .
[18] A. Schmid,et al. Spin reorientation transition of magnetite (001) , 2016 .
[19] C. Tusche,et al. Spin resolved bandstructure imaging with a high resolution momentum microscope. , 2015, Ultramicroscopy.
[20] S. J. van der Molen,et al. eV-TEM: Transmission electron microscopy in a low energy cathode lens instrument. , 2015, Ultramicroscopy.
[21] S. J. van der Molen,et al. Nanoscale measurements of unoccupied band dispersion in few-layer graphene , 2015, Nature Communications.
[22] J. Kautz,et al. Low-Energy Electron Potentiometry: Contactless Imaging of Charge Transport on the Nanoscale , 2015, Scientific Reports.
[23] J. Nicolas,et al. The ALBA spectroscopic LEEM-PEEM experimental station: layout and performance , 2015, Journal of synchrotron radiation.
[24] M. Copel,et al. Titration of submonolayer Au growth on Si(111) , 2014 .
[25] U. Diebold,et al. Real-space imaging of the Verwey transition at the (100) surface of magnetite , 2013, 1310.1373.
[26] A Berghaus,et al. A new aberration-corrected, energy-filtered LEEM/PEEM instrument II. Operation and results. , 2013, Ultramicroscopy.
[27] A. Scholl,et al. Cryogenic PEEM at the Advanced Light Source , 2012 .
[28] S. M. Schramm,et al. Low-energy electron microscopy and spectroscopy with ESCHER: Status and prospects , 2011, IBM J. Res. Dev..
[29] M. V. Muftakhov,et al. Lifetime of negative molecular ions of tetracene and pentacene with respect to the autodetachment of an electron , 2011 .
[30] H. W. Liu,et al. Growth of Topological Insulator Bi2Te3 Ultrathin Films on Si(111) Investigated by Low-Energy Electron Microscopy , 2010 .
[31] A Berghaus,et al. A new aberration-corrected, energy-filtered LEEM/PEEM instrument. I. Principles and design. , 2010, Ultramicroscopy.
[32] W. Chiu,et al. Radiation damage effects at four specimen temperatures from 4 to 100 K. , 2010, Journal of structural biology.
[33] A Berghaus,et al. A simple energy filter for low energy electron microscopy/photoelectron emission microscopy instruments , 2009, Journal of physics. Condensed matter : an Institute of Physics journal.
[34] R. Tromp,et al. Micrometer-scale band mapping of single silver islands in real and reciprocal space , 2009 .
[35] R. Tromp,et al. Surface plasmon microscopy using an energy-filtered low energy electron microscope. , 2008, Physical review letters.
[36] K. Nakajima,et al. Kinetics-driven anisotropic growth of pentacene thin films , 2008 .
[37] N. Buckanie,et al. Photoemission electron microscopy study of anthracene growth on Si(1 1 1) , 2007 .
[38] M. Farle,et al. Direct imaging of spin‐reorientation transitions in ultrathin Ni films by spin‐polarized low‐energy electron microscopy , 2006 .
[39] H. Berger,et al. Three-dimensional band structure of layered TiTe{sub 2}: Photoemission final-state effects , 2006, cond-mat/0604285.
[40] A. Locatelli,et al. Nanomagnetism studies with spin‐polarized low‐energy electron microscopy and x‐ray magnetic circular dichroism photoemission electron microscopy , 2005 .
[41] E. Schmich,et al. Strong Temperature Dependence of Irradiation Effects in Organic Layers , 2004 .
[42] F. Meyer Zu Heringdorf,et al. The nucleation of pentacene thin films , 2004 .
[43] E. Bauer,et al. Low energy electron microscopy study of In on Si(111) , 2002 .
[44] E. Bauer,et al. Low energy electron microscopy/diffraction study on growth of Ge on Si(113) surface , 2002 .
[45] L. Cederbaum,et al. Valence one-electron and shake-up ionization bands of polycyclic aromatic hydrocarbons. I. Benzene, naphthalene, anthracene, naphthacene, and pentacene , 2001 .
[46] R. M. Tromp,et al. Growth dynamics of pentacene thin films , 2001, Nature.
[47] K. L. Man,et al. Spin polarized low energy electron microscopy investigations of magnetic transitions in Fe/Cu(1 0 0) , 2001 .
[48] G. Witte,et al. Variable temperature and ex situ spin-polarized low-energy electron microscope , 2000 .
[49] H. Baumgärtel,et al. Structure-dependent Photostability of Polycyclic Aromatic Hydrocarbon Cations: Laboratory Studies and Astrophysical Implications , 1999 .
[50] R. Schlögl,et al. SMART: An Aberration-Corrected XPEEM/LEEM with Energy Filter , 1998 .
[51] V. Strocov,et al. Mapping the excited-state bands above the vacuum level with VLEED: principles, results for Cu, and the connection to photoemission , 1996 .
[52] F. Zemlin,et al. Effect of temperature on radiation damage to aromatic organic molecules , 1992 .
[53] L. Veneklasen. Design of a spectroscopic low-energy electron microscope , 1991 .
[54] Heinrich Rohrer,et al. 7 × 7 Reconstruction on Si(111) Resolved in Real Space , 1983 .
[55] W. Schmidt. Photoelectron spectra of polynuclear aromatics. V. Correlations with ultraviolet absorption spectra in the catacondensed series , 1977 .
[56] J. Pendry. Theory of photoemission , 1976 .
[57] R. Azria,et al. Vibrational and triplet excitation by electron impact in benzene , 1975 .
[58] W. Schmidt,et al. Photoelectron spectra of polynuclear aromatics. III. The effect of nonplanarity in sterically overcrowded aromatic hydrocarbons , 1974 .
[59] J. Pendry. The application of pseudopotentials to low-energy electron diffraction II: Calculation of the reflected intensities , 1969 .
[60] John L Rubinstein,et al. Radiation damage in electron cryomicroscopy. , 2010, Methods in enzymology.
[61] E. Bauer,et al. Spin Polarized Low Energy Electron Microscopy of Surface Magnetic Structure , 1988 .
[62] E. Bauer,et al. An analytical reflection and emission UHV surface electron microscope , 1985 .
[63] W. Schmidt,et al. Photoelectron spectra of polycyclic aromatic hydrocarbons , 1972 .