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226 Lu Zhao et al.


CEREZO, A., CLIFTON, P.H., GOMBERG,A.&SMITH, G.D.W. (2007). Aspects of the performance of a femtosecond laser-pulsed 3-dimensional atom probe. Ultramicroscopy 107, 720–725.


CEREZO, A., GODFREY, T.J., HUANG,M.&SMITH, G.D.W. (2000). Design of a scanning atom probe with improved mass resolution. Rev Sci Instrum 71, 3016.


CEREZO,A.&VAUMOUSSE,D.(2001). Numericalmodelling of mass resolution in a scanning atom probe. Ultramicroscopy 89,155–161.


CORNISH, T.J. & COTTER, R.J. (1993). A curved-field reflectron for improved energy focusing of product ions in time-of-flight mass spectrometry. Rapid Commun Mass Spectrom 7, 1037–1040.


FORBES,R.&CHIBANE, K. (1986). Derivation of an activation energy formula in the context of charge draining. J Phys Colloq 47(C), C7–C65.


FORBES, R.G. (1978). Field evaporation theory: The atomic-jug formalism. Surf Sci 70, 239–254.


FORBES, R.G. (1982). New activation-energy formulae for charge-exchange type mechanisms of field evaporation. Surf Sci Lett 116, L195–L201.


GAULT, B., MICHAEL, P.M., JULIE, M.C. & SIMON, P.R. (2012). Atom Probe Microscopy. Vol. 160. New York: Springer Science & Business Media.


GIPSON, G. (1980). An improved empirical formula for the electric field near the surface of field emitters. J Appl Phys 51, 3884.


GRENNAN-HEAVEN, N., CEREZO, A., GODFREY, T.J. & SMITH, G.D.W. (2007). Optimisation of a scanning atom probe with improved mass resolution using post deceleration. Ultramicroscopy 107, 705–712.


GRUBER, M.,VURPILLOT, F., BOSTEL,A.&DECONIHOUT, B. (2011). Field evaporation: A kinetic Monte Carlo approach on the influence of temperature. Surf Sci 605, 2025–2031.


HOUARD, J. (2010). Effet de champ sous éclairement ultra-bref ‘Application à la sonde atomique.’ Université de Rouen Available at https://tel.archives-ouvertes.fr/tel-00607299/ (Accessed April 1, 2016).


HOUARD, J., VELLA, A., VURPILLOT,F.&DECONIHOUT, B. (2010). Optical near-field absorption at a metal tip far from plasmonic resonance. Phys Rev B 81, 125411.


HOUARD, J., VELLA, A., VURPILLOT,F.&DECONIHOUT, B. (2011). Three-dimensional thermal response of a metal subwave- length tip under femtosecond laser illumination. Phys Rev B 84, 33405.


HYDE, J.M., CEREZO, A., SETNA, R.P., WARREN, P.J. & SMITH, G.D.W. (1994). Lateral and depth scale calibration of the position sensitive atom probe. Appl Surf Sci 76–77, 382–391.


KELLOGG, G.L. (1984). Measurement of activation energies for field evaporation of tungsten ions as a function of electric field. Phys Rev B 29(8), 4304.


KELLOGG, G.L. & TSONG, T.T. (1980). Pulsed-laser atom-probe field-ion microscopy. J Appl Phys 51, 1184.


KELLY, T. (2011). Kinetic-energy discrimination for atom probe tomography. Microsc Microanal 17(1), 1–14.


KELLY, T., CAMUS, P., LARSON,D.&HOLZMAN, L. (1995). High mass resolution local-electrode atom probe. US Patent, August 8, 1995. Available at https://www.google.com/patents/US5440124.


KELLY, T.F., CAMUS, P.P., LARSON, D.J.,HOLZMAN, L.M. &BAJIKAR, S.S. (1996). On the many advantages of local-electrode atom probes. Ultramicroscopy 62,29–42.


KELLY, T.F. & LARSON, D.J. (2000). Local electrode atom probes. Mater Charact 44,59–85.


KRISHNASWAMY, S.V. (1974). Premature field evaporation in the atom probe. Rev Sci Instrum 45, 1049.


KRISHNASWAMY, S.V. & MULLER, E.W. (1974). Energy deficits in pulsed field evaporation and deficit compensated atom-probe designs. Rev Sci Instrum 45, 1053–1059.


LEE, C.H. (1977). Picosecond optoelectronic switching in GaAs. Appl Phys Lett 30, 84.


LOI, S.T., GAULT,B., RINGER, S.P., LARSON,D.J.&GEISER, B.P. (2013). Electrostatic simulations of a local electrode atom probe: The dependence of tomographic reconstruction parameters on specimen and microscope geometry. Ultramicroscopy 132,107–113.


MANCINI,L., AMIRIFAR,N., SHINDE,D., BLUM,I., GILBERT,M., VELLA,A., VURPILLOT,F., LEFEBVRE,W., LARDÉ,R., TALBOT,E., PAREIGE,P., PORTIER,X., ZIANI,A., DAVESNNE,C., DURAND,C., EYMERY,J., BUTTÉ,R., CARLIN,J.-F., GRANDJEAN,N.&RIGUTTI, L. (2014). Composition of wide bandgap semiconductor materials and nanostructures measured by atom probe tomography and its dependence on the surface electric field. J Phys Chem C 118, 24136–24151.


MILLER, M.K. (2014). Atom Probe Tomography: The Local Electrode Atom Probe. New York: Springer.


MÜLLER, E.W. (1956). Field desorption. Phys Rev 102, 618–624. MÜLLER, E.W. & MÜLLER, E.W. (1968). The atom-probe field ion microscope. Rev Sci Instrum 39, 83.


NISHIKAWA,O. & KIMOTO, M. (1994). Toward a scanning atom probe—computer simulation of electric field. Appl Surf Sci 76–77, 424–430.


PANITZ, J.A.A. (1973). The 10 cm atom probe. Rev Sci Instrum 44, 1034–1038.


POSCHENRIEDER, W. (1971). Multiple-focusing time of flight mass spectrometers part I. Tofms with equal momentum acceleration. Int J Mass Spectrom Ion Phys 6(5–6), 413–426.


POSCHENRIEDER, W. (1972). Multiple-focusing time-of-flight mass spectrometers part II. TOFMS with equal energy acceleration. Int J Mass Spectrom Ion Phys 9(4), 357–373.


SAKURAI,T. & MÜLLER, E.W. (1973). Field calibration using the energy distribution of a free-space field ionization. Phys Rev Lett 30, 532–535.


SÉVELIN-RADIGUET,N., ARNOLDI,L., VURPILLOT,F., NORMAND,A., DECONIHOUT,B.&VELLA,A.(2015).


laser-assisted atom probe tomography. Europhys Lett 109, 37009.


SIJBRANDIJ, S.J., CEREZO,A. & SMITH, G.D.W. (1995). Improvements in the transmission of voltage evaporation pulses in the atom probe. Appl Surf Sci 87–88, 414–420.


STEARNS, D.G. (1989). Electro-optic sampling of ultrashort high voltage pulses. J Appl Phys 65, 1308.


TSONG, T.T. (1971). Measurement of the polarizabilities and field evaporation rates of individual tungsten atoms. J Chem Phys 54, 4205.


VURPILLOT, F., GRUBER, M., DA COSTA, G., MARTIN, I., RENAUD,L. & BOSTEL, A. (2011). Pragmatic reconstruction methods in atom probe tomography. Ultramicroscopy 111, 1286–1294.


VURPILLOT, F., HOUARD, J., VELLA,A.&DECONIHOUT, B. (2009). Thermal response of a field emitter subjected to ultra-fast laser illumination. J Phys D Appl Phys 42, 125502.


VURPILLOT,F. & OBERDORFER, C. (2014). Modeling atom probe tomography: A review. Ultramicroscopy 159, 202–216.


ZHAO,L., DELAMARE,A., NORMAND,A., DELAROCHE,F., LATRY,O., VURPILLOT,F.&RAVELO, B. (2015). RF transient pulse signal integrity with ns-duration for atom-probe tomography. In Radio and Antenna Days of the Indian Ocean (RADIO),Mauritius,pp. 1–2.


ZHAO, L., NORMAND, A., DELAROCHE, F., RAVELO,B. & VURPILLOT,F. (2015). Pulse shaping optimization for improving atom probe tomography. Int J Mass Spectrom 386,47–53.


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