By Donald T. Hawkins
Auger electron spectroscopy is speedily constructing into the only strongest analytical strategy in simple and utilized science.for investigating the chemical and structural houses of solids. Its ex plosive development starting in 1967 was once brought on via the advance of Auger analyzers in a position to de tecting one atom layer of fabric in a fragment of a moment. persisted development used to be assured to start with by means of the economic availability of equipment which mixed the features of scanning electron mi croscopy and ion-mill intensity profiling with Auger research, and secondly through the expanding want to know the atomistics of many strategies in primary study and engineering purposes. The increasing use of Auger research used to be observed through a rise within the variety of courses facing it. due to the constructing nature of Auger spectroscopy, the articles have seemed in lots of diverse resources overlaying different disciplines, in order that this can be very tough to find simply what has or has no longer been subjected to Auger research. during this scenario, a entire bibliography is obviou-sly important to these either in and out the sphere. For these within the box, this bibliography may be an excellent time saver for finding convinced references, in studying a specific subject, or while contemplating numerous points of instrumentation or facts research. This bibliography not just presents the main whole directory of references pertinent to floor Auger research on hand at the present time, however it can also be a foundation for extrapolating from earlier tendencies to destiny expectations.
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Additional info for Auger Electron Spectroscopy: A Bibliography: 1925–1975
TANKHIWALE AV + KHARE PL + MANDE C J pHYS B 4: 1250-4 (OCT 1971) AUGER ELECTRON SPECTROSCOPY 2-0527 ESCAPE LENGTH OF AUGER ELECTRONS. TARNG ML + WEHNER GK J APPL PHYS 44 (4): 1534-40 (1973) CA 78: 142041 2-0539 ROLE OF AUGER EFFECT IN THERMOSTIMULATED PHENOMENA IN IONIC CRYSTALS. TUAN BT + VEL ICKY B + BOHOUN A Z PHYS 251 (4): 289-99 (1972) 2-0528 X-RAY EMISSIO~ CROSS SECTIONS AND FLUORESCENCE YIELDS FOR LIGHT ATOMS AND MOLECULES BY ELECTRON IMPACT. (AUGER ELECTRON EJECTION CRCSS SECTIONS) TAWARA H + HARRISON KG + DEHEER FJ PHYSICA 63(2): 351-67 (15 JAN 1973) SAA 1973: 17468 2-0540 ELECTRON- HOLE INTERACTION EFFECT'S IN THE KL2,3L2,3 RADIATIVE AUGER SPECTRUM OF INSULATORS.
2ND. 1974. KYOTO. (JAP J APPL PHYS. SUPPL 2. PART 2. 1974) CA 83: 18806 3-0655 A SMALL RETARDING FIELD ENERGY ANALYZER WITH CEM. (AUGER SPECTROMETER) MATSUDAIRA T + ONCHI M SHINKU 18 (12): 468-72 (1975) (IN JAPANESE) CA 84: 128675 3-0668 PRODUCTION OF A SPHERICAL GRID FOR LOW ENERGY ELECTRON DIFFRACTION- AUGER ELECTRON SPECTROSCOPY. ONO M + BAKU J SHI~KU 15(12): 450-2 (1972) (IN JAPANESE) CA 78: 141332 3-0656 AUGER ELECTRO~ SPECTROSCOPY USING THE TWO-GRID LEED SYS~EM AND PHOTOELEC~RON MULTIPLIER, MATSUDAIRA ~ + WATANABE M + ONCHI M JAP J APPL PHYS 11 (12): 1853-4 (1972); SHINKU 15(12): 435-40 (1972) (IN JAPANESE) CA 78: 65078M; 128754 3-0669 UL~RAHIGH VACUUM AIRLOCK FOR LEED AND AUGER SPECTROSCOPY.
TOLPYGO EI + TOLPYGO KB + SHEINKMAN MK SOV PHYS SEHICOND 8 (3): 326-8 (1974) CA 81: 018091 2-0537 ELECTRON ESCAPE DEPTHS IN ALUMINUM. (AUGER ELECTRONS) TRACY JC J VACUUM SCI TECHNOL 11(1): 280 (JAN-FEB 1974) SAA 1974: 76345 2-0538 IONIZATION LOSSES IN (AUGER) SPECTRA OF ELECTRON INELASTIC SCATTERING FROM RARE EARTH METAL SURFACES. TSVEIMAN EV + ZASHKVARA VV + KORSUNSKII HI + REDKIN VS + TAZHIBAEVA S SOV PHYS SOLID STATE 14(5): 1333-5 (1972) CA 77: 1074780 23 AUGER ELECTRON SPECTROSCOPY 2-0567 MINORITY CARRIER LIFETIME IN INDIUM ARSENIDE EPlLAYERS.