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Type Lee, M. J. G.; Reifenberger, R.; Robins, E. S.; Lindenmayr, H. G.
  Publication Thermally enhanced field emission from a laser-illuminated tungsten tip: temperature rise of tip Volume Journal Article
Pages 1980
  Abstract Journal of Applied Physics  
  Corporate Author J. Appl. Phys.  
Publisher 51  
Editor
  Summary Language Series Editor (up)  
Abbreviated Series Title
  Series Issue ISSN  
Medium
  Expedition Notes  
Call Number  
Contribution Id  
Serial URL ISBN  
no 7824
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Eaton, H. C.; Lee, L. The simulation of images in the field ion microscope: specimens of arbitrary crystal structure and orientation Journal Article 1982 Journal of Applied Physics J. Appl. Phys. 53 no 8161
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Venus, D.; Lee, M. J. G. Linear intensity dependence of photoinduced field emission from tungsten Journal Article 1982 Surface Science Surf. Sci. 116 no 8309
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Venus, D.; Lee, M. J. G. Polarization dependence of photoexcitation in photofield emission Journal Article 1983 Surface Science Surf. Sci. 125, no 8476
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Hadley, K. W.; Donders, P. J.; Lee, M. J. G. Influence of shank profile on laser heating of a field emitter Journal Article 1984 Journal of Applied Physics J. Appl. Phys. 57 no 8559
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Venus, D.; Lee, M. J. G. Sample positioner and deflection energy analyzer for measurements of photofield emission Journal Article 1985 Review of Scientific Instruments Rev. Sci. Instrum. 56 no 8837
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Howell, P. R.; Fleet, D. E.; Page, T. F.; Ralph, B. The segregation of chromium to grain boundaries in tungsten Journal Article 1973 Proceedings 3rd International Conference on Strength of Metals and Alloys, pub. The Institute of Metals,London 1 no 8894
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Kim, I. - S.; Hunn, J. D.; Hashimoto, N.; Larson, D. J.; Maziasz, P. J.; Miyahara, K.; Lee, E. H. Defect and void evolution in oxide dispersion strengthened ferritic steels under 3.2 MeV Fe+ ion irradiation with simultaneous helium injection Journal Article 2000 Journal of Nuclear Materials J. Nucl. Mater. 280 264-274 no 9024
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Kim, S.-H.; Lee, J.Y.; Ahn, J.-P.; Choi, P.-P. Fabrication of Atom Probe Tomography Specimens from Nanoparticles Using a Fusible Bi-In-Sn Alloy as an Embedding Medium Journal Article 2019 Microscopy and Microanalysis 25 2 438-446 atom probe tomography; fusible alloy; nanoparticles We propose a new method for preparing atom probe tomography specimens from nanoparticles using a fusible bismuth-indium-tin alloy as an embedding medium. Iron nanoparticles synthesized by the sodium borohydride reduction method were chosen as a model system. The as-synthesized iron nanoparticles were embedded within the fusible alloy using focused ion beam milling and ion-milled to needle-shaped atom probe specimens under cryogenic conditions. An atom probe analysis revealed boron atoms in a detected iron nanoparticle, indicating that boron from the sodium borohydride reductant was incorporated into the nanoparticle during its synthesis. Cambridge University Press 2019/02/04 1431-9276 no NU @ karnesky @ 11534
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Arbuzov, V. L.; Vykhodets, V. B.; Trakhtenberg, S., I; Davletshin, A. E.; Bakunin, O. M.; Plotnikov, S. A.; Lee, J. H.; Kim, S. J.; Chung, B. S. The use of STM for investigation of surface relief in respect to tribologic properties of DLC coatings Journal Article 1996 Journal de Physique IV J. de Phys. IV 6 C5 185-188 Scanning Tunneling Microscopy Miller, M. K.; Suvorov, A. L.; Bakhtizin, R. Z. 1155-4339 2-86883-289-X IFES no 2114
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