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Journal articles40 documents

  • Sree Bash Chandra Debnath, Didier Tonneau, Carole Fauquet, Agnes Tallet, Anthony Goncalves, et al.. Dosimetric characterization of a small-scale (Zn,Cd)S:Ag inorganic scintillating detector to be used in radiotherapy. Physica Medica, Elsevier, 2021, 84, pp.15-23. ⟨10.1016/j.ejmp.2021.03.022⟩. ⟨hal-03189139⟩
  • Sree Bash Chandra Debnath, Marjorie Ferre, Didier Tonneau, Carole Fauquet, Agnes Tallet, et al.. High resolution small‐scale inorganic scintillator detector: HDR brachytherapy application. Medical Physics, American Association of Physicists in Medicine, 2021, ⟨10.1002/mp.14727⟩. ⟨hal-03169741⟩
  • D. Tonneau. Signal amplification of fiber integrated X-ray detectors by metallization. IEEE Sensors Journal, Institute of Electrical and Electronics Engineers, 2021, 21 (17), pp.18793. ⟨10.1109/JSEN.2021.3091660⟩. ⟨hal-03521426⟩
  • D. Tonneau, D. Renahy, S. Douillet, H. Maradj, C. Fauquet, et al.. An Interactive micromanipulation station combined to a confocal XRF instrument : proof of concept and volume resolution. IEEEXplore Digital Library, IEEE, 2021, ⟨10.1109/MARSS49294.2020.9307924⟩. ⟨hal-03523732⟩
  • S. Boulila, M. Ghamnia, A. Boukhachem, A. Ouhaibi, M. Chakhoum, et al.. Photocatalytical properties of NiO nanofilms doped with Ba. Philosophical Magazine Letters, Taylor & Francis, 2020, 100 (6), pp.283-293. ⟨10.1080/09500839.2020.1760389⟩. ⟨hal-02940558⟩
  • S.B.C Debnath, Agnes Tallet, S. Lavandier, Sree Bash, Chandra Debnath, et al.. High spatial resolution inorganic scintillator detector for high energy X-ray beam at small field irradiation. Medical Physics, American Association of Physicists in Medicine, 2019, ⟨10.1002/MP.14002⟩. ⟨hal-02424913v2⟩
  • A. Ouhaibi, M. Ghamnia, A. Dahamni, V. Heresanu, C. Fauquet, et al.. The effect of strontium doping on structural and morphological properties of ZnO nanofilms synthesized by ultrasonic spray pyrolysis method. Journal of Science: Advanced Materials and Devices, Elsevier B.V. : Vietnam National University, Hanoi, 2018, 3 (1), pp.29-36. ⟨10.1016/j.jsamd.2018.01.004⟩. ⟨hal-01957997⟩
  • F. Jandard, C. Fauquet, M. Dehlinger, A. Ranguis, A. Bjeoumikhov, et al.. Mapping of X-ray induced luminescence using a SNOM probe. Applied Surface Science, Elsevier, 2013, 267, pp.81-85. ⟨hal-00843731⟩
  • M. Dehlinger, C. Fauquet, S. Lavandier, O. Aumporn, F. Jandard, et al.. Spatial resolution of confocal XRF technique using capillary optics. Nanoscale Research Letters, SpringerOpen, 2013, 8, pp.UNSP 271. ⟨10.1186/1556-276X-8-271⟩. ⟨hal-00914734⟩
  • M. Dehlinger, C. Fauquet, F. Jandard, A. Bjeoumikhova, R. Gubzhokov, et al.. Toward sub-micro-XRF working at nanometer range using capillary optics. X-Ray Spectrometry, Wiley, 2013, 42 (6), pp.456-461. ⟨hal-00919570⟩
  • M. Dehlinger, C. Dorczynski, C. Fauquet, F. Jandard, D. Tonneau, et al.. Feasibility of simultaneous surface topography and XRF mapping using Shear Force Microscopy. International Journal of Nanotechnology, Inderscience, 2012, 9 (3-7), pp.460-470. ⟨10.1504/IJNT.2012.045348⟩. ⟨hal-00697528⟩
  • C. Fauquet, M. Dehlinger, F. Jandard, S. Ferrero, D. Pailharey, et al.. Combining scanning probe microscopy and X-ray spectroscopy. Nanoscale Research Letters, SpringerOpen, 2011, 6, pp.308. ⟨10.1186/1556-276X-6-308⟩. ⟨hal-00975161⟩
  • H. Dallaporta, M. Prestigiacomo, F. Bedu, D. Tonneau, D. Chatain, et al.. Electric field induced motion of metallic droplets: application to submicron contactor. Journal of Vacuum Science and Technology B, 2010, 28 (4), pp.L35-L38. ⟨10.1116/1.3462963⟩. ⟨hal-00523864⟩
  • H. Abed, H. Sahaf, A. Reguer, N. Rochdi, D. Tonneau, et al.. Silicon nanowires synthesis on a submicronic terminal: Structural and electrical characterization. Journal of Applied Physics, American Institute of Physics, 2010, 107, pp.23410. ⟨hal-00475814⟩
  • A. Reguer, F. Bedu, D. Tonneau, H. Dallaporta, M. Prestigiacomo, et al.. Structural and electrical studies of conductive nanowires prepared by focused ion beam induced deposition. Journal of Vacuum Science and Technology B, 2008, 26 (1), pp.175-180. ⟨hal-00303797⟩
  • N. Rochdi, D. Tonneau, F. Jandard, H. Dallaporta, V. Safarov. Fabrication and electrical properties of ultra-thin silicon nanowires. physica status solidi (a), Wiley, 2008, 205 (5), pp.1157-1161. ⟨hal-00386844⟩
  • N. Rochdi, D. Tonneau, F. Jandard, H. Dallaporta, V. Safarov, et al.. Electrical conductivity of ultra-thin silicon nanowires. Journal of Vacuum Science and Technology B, 2008, 26 (1), pp.159-163. ⟨hal-00303801⟩
  • H. Abed, A. Charrier, H. Dallaporta, V. Safarov, H. Jamgotchian, et al.. Directed growth of horizontal silicon nanowires by laser induced decomposition of silane. Journal of Vacuum Science and Technology B, 2006, 24, pp.1248. ⟨10.1116/1.2194948⟩. ⟨hal-00070974⟩
  • M. Prestigiacomo, F. Bedu, F. Jandard, D. Tonneau, H. Dallaporta, et al.. Purification and crystallization of tungsten wires fabricated by focused-ion-beam-induced deposition. Applied Physics Letters, American Institute of Physics, 2005, ⟨10.1063/1.1927714⟩. ⟨hal-01578387⟩
  • H. Abed, H. Jamgotchian, H. Dallaporta, B. Gely, P. Bindzi, et al.. Deposition of gold nanofeatures on silicon samples by field-induced deposition using a scanning tunneling microscope. Journal of Vacuum Science & Technology B Microelectronics and Nanometer Structures, American Vacuum Society (AVS), 2005, 23 (4), ⟨10.1116/1.1943440⟩. ⟨hal-01722654⟩
  • D. Tonneau, Francinelli A., Tonneau D., Clément N., Abed H., et al.. Light induced reversible conductivity changes in Silicon-On-Insulator nanowires. Applied Physics Letters, American Institute of Physics, 2004, 85 (22), pp.5272. ⟨hal-03513105⟩
  • M. Prestigiacomo, L. Roussel, A. Houel, P. Sudraud, F. Bedu, et al.. Studies of structures elaborated by focused ion beam induced deposition. Microelectronic Engineering, Elsevier, 2004, ⟨10.1016/j.mee.2004.07.047⟩. ⟨hal-01578374⟩
  • D. Tonneau, Bonnail N., Tonneau D., Capolino G.-A., Dallaporta H.. Variable Structure Control of a Piezoelectric Actuator for a Scanning Tunnelling Microscope. IEEE Transactions on Industrial Informatics, Institute of Electrical and Electronics Engineers, 2004, 51 (2), pp.354. ⟨hal-03513247⟩
  • D. Tonneau. High aspect ratio nano-oxidation of Silicon with noncontact atomic force microscopy. Journal of Vacuum Science and Technology B, 2003, 21 (6), pp.2348. ⟨hal-03513081⟩
  • D. Tonneau, N. Clement, A. Francinelli, H. Dallaporta, F. Jandard, et al.. Current-Induced Structural Modification of Silicon-on-Insulator Nanostructures. Applied Physics Letters, American Institute of Physics, 2003, 82 (11), pp.1727. ⟨hal-03521584⟩
  • D. Tonneau, Y. Pauleau. 'Kinetics and Reaction Mechanisms of Laser-Assisted Chemical Vapor Deposition of Polycrystalline Silicon Dots from Silane. Journal of Applied Physics, American Institute of Physics, In press, 91 (3), pp.1553-1559. ⟨hal-03523710⟩
  • D. Tonneau, Y. Pauleau. Reaction Mechanisms in Laser-assisted Chemical Vapor Deposition of Microstructures. NATO ASI Ser., Ser. 2, 2002, 55, pp.223-254. ⟨hal-03523769⟩
  • D. Tonneau, N. Clément, A. Houel, N. Bonnail, H. Dallaporta, et al.. Proximal Probes Induced Chemical Processing for Nanodevice Elaboration. NATO ASI Ser., Ser. 2, 2002, Chemical Physics of Thin Film Deposition Processes for Micro- and Nano-Technologies, 55, pp.255-281. ⟨hal-03523774⟩
  • D. Tonneau, Bouchiat V., Faucehr M., Fournier T., Pannetier B., et al.. Resistless Patterning of Quantum Nanostructures by Local Anodization with an Atomic Force Microscope. Microelectronic Engineering, Elsevier, 2002, 61-62, pp.517. ⟨hal-03521608⟩
  • D. Tonneau, A. Houel, N. Bonnail, H. Dallaporta, V. Safarov. Direct Patterning of Nanostructures by Field-Induced Deposition from a STM Tip. Journal of Vacuum Science and Technology B, 2002, 20 (6), pp.2337. ⟨hal-03521601⟩
  • D. Tonneau, F. Marchi, V. Bouchiat, H. Dallaporta, V. Safarov. Growth of Silicon Oxide on Hydrogenated Silicon During Lithography with an Atomic Force Microscope. Journal of Vacuum Science and Technology B, 2000, 16 (6), pp.2952-2956. ⟨hal-03523720⟩
  • D. Tonneau, F. Marchi, H. Dallaporta, V. Safarov, V. Bouchiat. Direct Patterning of Noble Metal Nanostructures with a STM. Journal of Vacuum Science and Technology B, 2000, 18 (3), pp.1171-1176. ⟨hal-03523719⟩
  • D. Tonneau, P. D. Szkutnik, A. Piednoir, A. Ronda, F. Marchi, et al.. STM Studies : Spatial Resolution Limits to Fit Observations in Nanotechnology. Applied Surface Science, Elsevier, 2000, 164, pp.169-174. ⟨hal-03523715⟩
  • D. Tonneau, F. Thuron, A. Correia, J.E. Bouree, Y. Pauleau. Growth Kinetics and Mechanisms of Aluminum Dots Promoted by Laser-Induced Decomposition of TMAA. Jpn. J. Appl. Phys, 1998, 37, pp.4954-4961. ⟨hal-03523722⟩
  • D. Tonneau, R. Pierrisnard, H. Dallaporta, W. Marine. Growth Kinetics of Copper Films from Photoassisted CVD of Copperacetylacetonate. Journal de Physique IV Proceedings, EDP Sciences, 1995, 05 (C5), pp.C5-629-C5-635. ⟨10.1051/jphyscol:1995575⟩. ⟨jpa-00253937⟩
  • D. Tonneau, J.E. Bouree, A. Correia, G. Roche, G. Pelous, et al.. Laser Direct Writing of Gold Tracks from Decomposition of Organometallic Screen Ink. J. of Appl. Phys, 1995, 78, pp.5139-5142. ⟨hal-03523723⟩
  • D. Tonneau, J.E. Bourée, Y. Pauleau. Kinetics of Laser Induced Thermal Decomposition of Trimethylamine-alane. Applied Surface Science, Elsevier, 1995, 86, pp.488-493. ⟨hal-03523725⟩
  • D. Tonneau, M. Cuniot, J.M. Laroche, H. Orain, J.F. Rommeluere, et al.. Electrical Characterization of Laser-Induced Deposits of Aluminum on Gallium Arsenide. Thin Solid Films, Elsevier, 1994, 241, pp.47-51. ⟨hal-03523726⟩
  • D. Tonneau, G. Auvert, Y. Pauleau. LASER-INDUCED DECOMPOSITION OF METAL CARBONYLS FOR CHEMICAL VAPOR DEPOSITION OF MICROSTRUCTURES. Journal de Physique Colloques, 1989, 50 (C5), pp.C5-647-C5-656. ⟨10.1051/jphyscol:1989575⟩. ⟨jpa-00229608⟩
  • D. Tonneau, Y. Pauleau, G. Auvert. PYROLYTIC DECOMPOSITION OF SILANE ON LASER-IRRADIATED SILICA SUBSTRATES. Journal de Physique Colloques, 1989, 50 (C5), pp.C5-637-C5-645. ⟨10.1051/jphyscol:1989574⟩. ⟨jpa-00229607⟩

Conference papers5 documents

  • D. Tonneau, Maël Dehlinger, S. Lavandier, Igor Ozerov, F. Bedu, et al.. High resolution XRF using capillary optics. ImagineNano, Apr 2013, Bilbao, Spain. ⟨hal-02904620⟩
  • D. Tonneau, M. Dehlinger, C. Fauquet, F. Jandard, A. Bjeoumikhov, et al.. Feasibility of sub-micron XRF combined to Scanning probe Microscopy. DENVER X-RAY CONFERENCE DXC2011, Aug 2011, Colorado Springs, United States. pp.216-227. ⟨hal-03523734⟩
  • D. Tonneau, N. Clément, A. Houel, H. Dallaporta, V. Safarov. Ultimate lithography using proximal probe microscopes for single electron device fabrication or nano-object addressing. CAS2003, Sep 2003, Sinaïa, Romania. ⟨hal-03523738⟩
  • D. Tonneau, A. Kuzmin, R. Kalendarev, J. Purans, A. Houel, et al.. X-ray absorption spectroscopy, atomic force and scanning tunneling microscopies of iridium oxide thin films. ICSFS-11, Jul 2002, Marseille, France. ⟨hal-03523743⟩
  • D. Tonneau, N. Clément, H. Dallaporta, V. Bouchiat, D. Mariole, et al.. Electronic transport properties of single crystal silicon nanowires fabricated using an Atomic Force Microscope. MSS10 conference, Günther Bauer, Jul 2001, Linz, Austria. pp.999-1002. ⟨hal-03521650⟩