History of aberration correction 3639 development ’ in a small book
暂无分享,去创建一个
[1] L. Marton,et al. Static and dynamic electron optics , 1955 .
[2] D. Maas,et al. Electrostatic Aberration Correction in LV-SEM , 2000, Microscopy and Microanalysis.
[3] J. E. Barth,et al. Low-energy foil aberration corrector. , 2002, Ultramicroscopy.
[4] G. A. Morton,et al. Electron Optics And The Electron Microscope , 1945 .
[5] M. Haider,et al. Correction of the spherical aberration of a 200 kV TEM by means of a hexapole-corrector , 1995 .
[6] H. Rose. Optics of high-performance electron microscopes , 2008 .
[7] J. E. Barth. ELECTROSTATIC CORRECTION OF THE SPHERICAL ABERRATION OF ELECTRON LENSES. , 1967 .
[8] W. Skoczylas,et al. Simultaneous Correction of Spherical and Chromatic Aberrations with an Electron Mirror: An Electron Optical Achromat , 1997, Microscopy and Microanalysis.
[9] Bernd Kabius,et al. Electron microscopy image enhanced , 1998, Nature.
[10] G. Schönhense. Time-resolved photoemission electron microscopy , 2008 .
[11] H. Rose. Historical aspects of aberration correction. , 2009, Journal of electron microscopy.
[12] Jon Orloff,et al. Handbook of Charged Particle Optics , 1997 .
[13] Bernd Kabius,et al. Towards 0.1 nm resolution with the first spherically corrected transmission electron microscope , 1998 .
[14] J. Verster. On the use of gauzes in electron optics , 1963 .
[15] K. Hanszen. Holography in Electron Microscopy , 1982 .
[16] M. Hibino,et al. Correction of the Spherical Aberration of the Objective Lens in a Conventional Transmission Electron Microscope by Means of a Foil Lens , 1981 .
[17] P D Nellist,et al. Progress in aberration-corrected scanning transmission electron microscopy. , 2001, Journal of electron microscopy.
[18] M. Haider,et al. Prerequisites for a Cc/Cs-corrected ultrahigh-resolution TEM. , 2008, Ultramicroscopy.
[19] L. C. Oldfield,et al. A rotationally symmetric electron beam chopper for picosecond pulses , 1976 .
[20] P. M. Duffieux. L'intégrale de Fourier et ses applications à l'optique , 1946 .
[21] M. Hibino,et al. Reduction of the Probe Diameter through the Correction of Spherical Aberration by the Foil Lens , 1984 .
[22] O. Scherzer. Spharische und chromatische Korrektur von Elektronen-Linsen , 1947 .
[23] G. Schönhense,et al. Correction of chromatic and spherical aberration in electron microscopy utilizing the time structure of pulsed excitation sources , 2002 .
[24] M. Hibino,et al. Correction of the Spherical Aberration of a Magnetic Lens with a Foil Lens , 1976 .
[25] A. Crewe. The sextupole corrector. I: Algebraic calculations , 1984 .
[26] T. Matsuda,et al. Electron Microholography by Two-Beam Method , 1970 .
[27] H. Rose. Advances in Electron Optics , 2003 .
[28] S. Johnston. Telling Tales: George Stroke and the Historiography of Holography , 2004 .
[29] H. Padmore,et al. Correction and alignment strategies for the beam separator of the photoemission electron microscope 3 (PEEM3) , 2005 .
[30] J. Burfoot. Correction of Electrostatic Lenses by Departure from Rotational Symmetry , 1953 .
[31] Dr.-Ing. Habil. E. Brüche. Elektronengeräte : Prinzipien und Systematik , 1941 .
[32] O. L. Krivanek,et al. Sub-ångstrom resolution using aberration corrected electron optics , 2002, Nature.
[33] Peter Hawkes,et al. Image processing and computer-aided design in electron optics , 1973 .
[34] H. Daimon,et al. Approach for simultaneous measurement of two-dimensional angular distribution of charged particles: spherical aberration correction using an ellipsoidal mesh. , 2005, Physical review. E, Statistical, nonlinear, and soft matter physics.
[35] H. Rose. Optics of high-performance electron microscopes. , 2008, Science and technology of advanced materials.
[36] Fu,et al. Correction of aberrations of an electron microscope by means of electron holography. , 1991, Physical review letters.
[37] M. Mauck,et al. Aberration-Correcting Properties of the Hyperbolic Electron Mirror , 1985 .
[38] D. Krahl,et al. Electron Optics of Imaging Energy Filters , 1995 .
[39] J. King,et al. Electron and molecular microscopy: possibilities rather than limitations. , 1971, Science.
[40] John L. Hutchison,et al. Atomic Resolution Transmission Electron Microscopy , 2019, Springer Handbook of Microscopy.
[41] G. Archard. Proposed system for magnetic electron probe , 1960 .
[42] M. Hibino. Characteristics of the Foil Lens for the Correction of the Spherical Aberration of the Strongly Excited Magnetic Lens , 1978 .
[43] A. Crewe,et al. A Quadrupole Octupole Corrector for a 100 keV STEM , 1974 .
[44] J. Elstner,et al. Image properties in an aberration-corrected photoemission electron microscope , 2008 .
[45] Electron-Optical Systems with Helical Axis , 1951 .
[46] P. W. Hawkes,et al. Electron Image Processing: A Survey , 1978 .
[47] Maximilian Haider,et al. Aberration correction in a low voltage SEM by a multipole corrector , 1995 .
[48] B. Lencová,et al. The development of EOD program for the design of electron optical devices , 2007 .
[49] B. Lencová,et al. A new program for the design of electron microscopes , 2008 .
[50] T. Hanai. Effect of the three-fold astigmatism on the performance of the foil lens used for correction of the spherical aberration of a probe-forming lens , 1994 .
[51] J. Dungey,et al. Coaxial electron lenses , 1947 .
[52] H. Rose. Aberration correction in electron microscopy , 2005, International Journal of Materials Research.
[53] Sander Henstra,et al. Electrostatic aberration correction in low-voltage SEM , 2001, SPIE Optics + Photonics.
[54] W. Glaser. über den öffnungsfehler der Elektronenlinsen , 1940 .
[55] E. Ash. Use of Space Charge in Electron Optics , 1955 .
[56] D. Gabor. A New Microscopic Principle , 1948, Nature.
[57] D. Paganin,et al. Quantitative TEM-based phase retrieval of MgO nano-cubes using the transport of intensity equation. , 2008, Ultramicroscopy.
[58] R. Gerchberg. A practical algorithm for the determination of phase from image and diffraction plane pictures , 1972 .
[59] Mirror corrector for low-voltage electron microscopes , 2003 .
[60] From white elephant to Nobel Prize: Dennis Gabor's wavefront reconstruction , 2005 .
[61] M. Ichihashi. Correction of spherical aberration by means of a thin conducting foil , 1971 .
[62] Akira Tonomura,et al. The Quantum World Unveiled by Electron Waves , 1998 .
[63] M. Lehmann,et al. Electron holography—basics and applications , 2007 .
[64] N. Vaidya. The design and properties of synklysmotron lenses , 1975 .
[65] S. Maruse,et al. Korrektur vom Öffnungsfehler der Elektronenlinse , 1970 .
[66] E. Plies. Simplified computation of third-rank image aberrations of electron-optical systems with curved axis. , 2002, Ultramicroscopy.
[67] H. Rose. Prospects for aberration-free electron microscopy. , 2005, Ultramicroscopy.
[68] G. Möllenstedt,et al. Fresnelscher Interferenzversuch mit einem Biprisma für Elektronenwellen , 2004, Naturwissenschaften.
[69] R. V. Aken. Low-energy electron beams through ultra-thin foils, applications for electron microscopy , 2005 .
[70] J. E. Barth,et al. Aberration integrals for the low-voltage foil corrector , 2004 .
[71] S. Yavor,et al. The Optics of Round and Multipole Electrostatic Lenses , 1989 .
[72] J. Rodenburg. Ptychography and Related Diffractive Imaging Methods , 2008 .
[73] P. Meads. Quadrupole Magnet Misalignment Tolerances , 1967 .
[74] G. Möllenstedt,et al. Beobachtungen und Messungen an Biprisma-Interferenzen mit Elektronenwellen , 1956 .
[75] D. Gabor,et al. Experimental investigations on electron interaction , 1955, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[76] A. Crewe. Chapter 1 The Work of Albert Victor Crewe on the Scanning Transmission Electron Microscope and Related Topics , 2009 .
[77] E. Jacobsen,et al. Quadrupole-Octopole and Foil Lens Corrector Systems , 1971 .
[78] O. Krivanek,et al. CHAPTER 3 – Advances in Aberration-Corrected Scanning Transmission Electron Microscopy and Electron Energy-Loss Spectroscopy , 2008 .
[79] Xieqing Zhu,et al. Simulation methods for multipole imaging systems and aberration correctors. , 2002, Ultramicroscopy.
[80] A. Crewe. Electron motion in tuned fields. II: Some applications , 1992 .
[81] M. Lehmann,et al. Electron Holography with a Cs-Corrected Transmission Electron Microscope , 2007, Microscopy and Microanalysis.
[82] Hidetoshi Yoshida,et al. Characteristics and effectiveness of a foil lens for correction of spherical aberration in scanning transmission electron microscopy , 1998 .
[83] G. Möllenstedt. The Invention of the Electron Fresnel Interference Biprism* *Translated by T. Mulvey. , 1991 .
[84] N. Vaidya. Synklysmotron lenses—A new electron-optical correcting system , 1972 .
[85] D. Gabor. A Zonally Corrected Electron Lens , 1946, Nature.
[86] Z. Shao,et al. Properties of a four-electrode adjustable electron mirror as an aberration corrector , 1990 .
[87] P. Hawkes. Quadrupoles in electron lens design , 1970 .
[88] Hannes Lichte,et al. Electron holograms for subångström point resolution , 1990 .
[89] G. Rempfer,et al. An Experimental Study of the Hyperbolic Electron Mirror , 1986 .
[90] Maximilian Haider,et al. Residual wave aberrations in the first spherical aberration corrected transmission electron microscope , 1998 .
[91] Tsuyoshi Matsuda,et al. Spherical-Aberration Correction of an Electron Lens by Holography , 1979 .
[92] P. Sturrock. Perturbation characteristic functions and their application to electron optics , 1951, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[93] T. E. Alltbone. B.S.I.R.A. OPEN DAYS ADDRESS White and Black Elephants in Aldermaston , 1958 .
[94] O. Scherzer. Zur Korrigierbarkeit von Elektronenlinsen , 1946 .
[95] M. Haider,et al. Correction of spherical and chromatic aberration in a low voltage SEM , 1995 .
[96] G. Hottenroth. Untersuchungen über Elektronenspiegel , 1937 .
[97] D. Gabor. Microscopy by reconstructed wave-fronts , 1949, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[98] A. Recknagel. Zur Theorie des Elektronenspiegels , 1937 .
[99] H. Rose,et al. Electrostatic correction of the chromatic and of the spherical aberration of charged-particle lenses (part II). , 2001, Journal of electron microscopy.
[100] G. Archard. Requirements contributing to the design of devices used in correcting electron lenses , 1954 .
[101] D. Gabor. A Space-Charge Lens for the Focusing of Ion Beams , 1947, Nature.
[102] A. Crewe. Electron motion in tuned fields I. The algebra , 1992 .
[103] P. Schiske,et al. 2.2B Reminiscences of Walter Glaser , 1996 .
[104] H. Rose,et al. Geometrical Charged-Particle Optics , 2008 .
[105] Tsai. Studies of a magnetically focused electrostatic mirror. II. Aberration corrections , 2000, Journal of microscopy.
[106] G. Archard. A Possible Chromatic Correction System for Electron Lenses , 1955 .
[107] P. Hawkes. The geometrical aberrations of general electron optical systems I The conditions imposed by symmetry , 1965, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[108] Z. Shao,et al. Adjustable four‐electrode electron mirror as an aberration corrector , 1989 .
[109] L. Oldfield. Microwave cavities as electron lenses. , 1974 .
[110] P. Hawkes. Can the Nomura lens be free of spherical aberration? , 2009, Journal of microscopy.
[111] Akira Tonomura,et al. Optical Reconstruction of Image from Fraunhofer Electron-Hologram , 1968 .
[112] O. Scherzer,et al. Über einige Fehler von Elektronenlinsen , 1936 .
[113] R. Whitmer. Investigation of Nonrotationally Symmetrical Electrostatic Electron Optical Lenses , 1956 .
[114] O. Scherzer. Ein elektronenoptischer Apochromat , 1948 .
[115] J. M. Cowley. A New Microscope Principle , 1953 .
[116] M. Mauck. Correction of Chromatic Aberration with an Electron Mirror , 1993 .
[117] Stephan Uhlemann,et al. A spherical-aberration-corrected 200 kV transmission electron microscope , 1998 .
[118] M. Haider,et al. Demonstration of C C /C S -correction in HRTEM , 2008 .
[119] H. Lichte. Parameters for high-resolution electron holography , 1993 .
[120] D. Gabor. Microscopy by Reconstructed Wave Fronts: II , 1951 .
[121] G. X. Ritter,et al. Recent Developments in Image Algebra , 1991 .
[122] Z. Shao,et al. A study on hyperbolic mirrors as correctors , 1990 .
[123] H. Koops. Aberration Correction in Electron Microscopy , 1978 .
[124] W. Glaser. Elektronen- und Ionenoptik , 1956 .
[125] Crewe,et al. Studies of a magnetically focused electrostatic mirror. I. Experimental test of the first order properties , 2000, Journal of microscopy.
[126] H. Rose,et al. Correction properties of electron mirrors , 1997 .
[127] U. Gianola. LETTERS TO THE EDITOR: The Correction of the Spherical Aberration of Electron Lenses using a Correcting Foil Element , 1950 .
[128] Emil Wolf,et al. Principles of Optics: Contents , 1999 .
[129] Robert Schlögl,et al. SMART: a planned ultrahigh-resolution spectromicroscope for BESSY II , 1997 .
[130] G. Möllenstedt,et al. Elektronenholographie und Rekonstruktion mit Laserlicht , 1968, Naturwissenschaften.
[131] Walter Glaser,et al. Grundlagen der Elektronenoptik , 1952 .
[132] G. Rempfer. A theoretical study of the hyperbolic electron mirror as a correcting element for spherical and chromatic aberration in electron optics , 1990 .
[133] N. H. Dekkers. Correction of spherical aberration , 1969 .
[134] G. Archard. TWO NEW SIMPLIFIED SYSTEMS FOR THE CORRECTION OF SPHERICAL ABERRATION IN ELECTRON LENSES , 1955 .
[135] Maximilian Haider,et al. CHAPTER 2 – Present and Future Hexapole Aberration Correctors for High-Resolution Electron Microscopy , 2008 .
[136] H. Rose. Correction of aperture aberrations in magnetic systems with threefold symmetry , 1981 .
[137] Xieqing Zhu,et al. Simulation software for designing electron and ion beam equipment , 2006 .
[138] S. Nomura. Design of apochromatic TEM composed of usual round lenses , 2008 .
[139] A. Spence,et al. On-Line Aberration Measurement and Correction in STEM , 1997, Microscopy and Microanalysis.
[140] G. Archard. An Unconventional Electron Lens , 1958 .
[141] Peter Denes,et al. An update on the TEAM project — first results from the TEAM 0.5 microscope, and its future development , 2008 .
[142] T. Matsuda,et al. Off-Axis Electron Micro-Holography , 1972 .
[143] H. Lichte. Electron Image Plane Off-axis Holography of Atomic Structures , 1991 .
[144] M. Hibino,et al. Improvement of an Electron Probe Profile Using the Foil Lens , 1982 .
[145] Peter Hawkes. The STEM forms templates , 1995 .
[146] Ondrej L. Krivanek,et al. Towards sub-Å electron beams , 1999 .
[147] H. Padmore,et al. An x-ray photoemission electron microscope using an electron mirror aberration corrector for the study of complex materials , 2004 .
[148] M. Hibino,et al. Increase of Current Density of the Electron Probe by Correction of the Spherical Aberration with a Side-Entry Type Foil Lens , 1995 .
[149] A. Gorkum. Correction of spherical aberration in charged particle lenses using aspherical foils , 1983 .
[150] Ondrej L. Krivanek,et al. STEM Aberration Correction: an Integrated Approach , 2008 .
[151] A. Hardy,et al. Formation des Images Électroniques en Holographie de Fraunhofer en LigneExpressions des Fonctions de Transfert du Contraste , 1975 .
[152] R. Kompfner. XXXVI. On a method of correcting the spherical error of electron lenses, especially of those employed with electron microscopes , 1941 .
[153] H. E. Preston. An analytic Solution for the Potential Distribution within an Asymmetrically Excited Electrostatic Quadrupole Lens , 1969, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[154] J. N. Wilson,et al. Image Algebra: An Overview , 1990, Comput. Vis. Graph. Image Process..
[155] M. Haider,et al. Developments of aberration correction systems for current and future requirements , 2008 .
[156] J. Zach. Design of a high-resolution low-voltage scanning electron microscope , 1989 .
[157] W. Glaser. Über ein von sphärischer Aberration freies Magnetfeld , 1940 .
[158] Jennifer L. Davidson. Foundation and Applications of Lattice Transforms in Image Processing , 1992 .
[159] A. Gorkum,et al. Experiments on eliminating spherical aberration in electron guns using aspherical mesh lenses , 1986 .
[160] E. Munro,et al. Software for designing multipole aberration correctors , 2008 .