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PUBLICATIONS:

2011:

1) Topological origin of subgap conductance in insulating bilayer graphene,
    J. Li, I. Martin, M. Buttiker, A.F.Morpurgo,
    Nature Physics 7, 28, (2011)

^

2010:

1) Electric-field control of the metal-insulator transition in ultrathin NdNiO3
    films,

    R. Scherwitzl, P. Zubko, I. Gutierrez Lezama, S. Ono, A.F. Morpurgo, G. Gatalan,
    and J.M. Triscone,
    Advanced Materials 22, 5517 (2010)

2) Marginality of bulk-edge correspondence for single valley Hamiltonians,
    J. Li, A.F. Morpurgo, M. Buttiker and I. Martin,
    Phys. Rev. B 82, 245404 (2010)

3) Two-dimensional quantum oscillations of the conductance at LaAlO3/SrTiO3
    interfaces,

    A.D. Caviglia, S. Gariglio, C. Cancellieri, B. Sacepe, A. Fete, N. Reyren, M. Gabay,
    A.F.Morpurgo, and J.M. Triscone,
    Phys. Rev. Lett. 105, 236802 (2010)

4) Shot noise suppression and hopping conduction in graphene nanoribbons,
    R. Danneau, F. Wu, M.Y. Tomi, J.B. Oostinga, A.F. Morpurgo, and P.J. Hakonen,
    Phys. Rev. B 82, 161405 (2010)

5) High performance n-type organic field-effect transistors with ionic liquid
    gates,

    S. Ono, N. Minder, Z.Chen, A. Facchetti, and A.F. Morpurgo,
    Appl. Phys. Lett. 97, 143307 (2010)

6) Small gap semiconducting organic charge-transfer interfaces,
    M. Nakano, H. Alves, A. S. Molinari, S. Ono, N. Minder and A. F. Morpurgo,
    Appl. Phys. Lett. 96, 232102 (2010)

7) Magnetotransport through graphene nanoribbons,
    J. B. Oostinga, B. Sacepe, M. F. Craciun, et al.
    Phys. Rev. B 81, 193408 (2010).

8) Charge Noise in Graphene Transistors,
    I. Heller, S. Chatoor, J. Mannik, M. A. G. Zevenbergen, J. B. Oostinga,
    A. F. Morpurgo, C. Dekker and S. G. Lemay
    Nano Letters 10 ,1563 (2010)

9) Controlled tunnel-coupled ferromagnetic electrodes for spin injection in
     organic single-crystal transistors ,

    W.J.M. Naber, M.F. Craciun, J.H.J. Lemmens, A.H. Arkenbout, T.T.M. Palstra,
    A.F. Morpurgo and W.G. van der Wiel
    Organic Electronics 11, 743 (2010)

10) Contact resistance in graphene-based devices ,
    S. Russo, M.F. Craciun, M. Yamamoto, A.F. Morpurgo and S. Tarucha
    Physica E-Low-Dimensional Systems & Nanostructures 42, 677 (2010)

11) Special issue on Graphene,
    A. F. Morpurgo, B. Trauzettel
    Semiconductor Science and Technology 25, 030301 (2010)

^

2009:

1) Transport through double-gated graphene-based devices,
    S. Russo, M.F. Craciun, M. Yamamoto, S. Tarucha, and A.F. Morpurgo
    New Journal Of Physics 11, 095018 (2009).

2) Shot noise measurements in graphene,
    R. Danneau, F.Wu, M.F. Craciun, S.Russo, M.Y. Tomi, J. Salmilehto,
    A.F. Morpurgo, and P.J. Hakonen
    Solid State Communications 149, 1050 (2009).

3) Threshold shift and space charge in organic transistors,
    I. Gutierrez Lezama and A.F. Morpurgo
    Phys. Rev. Lett. 103 ,066803 (2009)

4) Organic single-crystal Schottky gate transistors,
    T. Kaji, T. Takenobu, A.F.Morpurgo, and Y. Iwasa
    Adv. Mat. 21, 1 (2009)

5) Trilayer graphene: a semimetal with gate-tunable band overlap,
    M.F. Craciun, S. Russo, M. Yamamoto, J.B.Oostinga, A.F. Morpurgo,
    and S. Tarucha
    Nature Nanotechnology 4, 383 (2009)

6) Evidence for a Mott state in Potassium intercalated pentacene,
    M.F. Craciun, G. Giovannetti, S. Rogge, G. Brocks, A.F. Morpurgo,
    and J. Van den Brink
    Phys. Rev. B 79, 125116 (2009)

7) High electron mobility in vacuum and ambient for single-crystal transistors
    A.S. Molinari, H. Alves, Z. Chen, A. Facchetti, and A.F. Morpurgo
    J. Am. Chem. Soc. (Communications) 131, 2462 (2009)

8) Electrostatic confinement of electrons in graphene nanoribbons
    X. L. Liu, J. B. Oostinga, A. F. Morpurgo, and L. M. K. Vandersypen
    Phys. Rev. B 80, 121407 (2009)

9) CONDENSED-MATTER PHYSICS Dirac electrons broken to pieces
    A.F. Morpurgo
    Nature 462, 170 (2009)

10) Quantitative analysis of density-dependent transport in
     tetramethyltetraselenafulvalene single-crystal transistors: Intrinsic
     properties and trapping

    H. Xie, H. Alves, and A.F. Morpurgo
    Phys. Rev. B 80, 245305 (2009)

^

2008:

1) Evanescent wave transport and shot noise in graphene: ballistic regime
     and effect of disorder,

    R. Danneau, F. Wu, M.F. Craciun, S. Russo, M.Y. Toni, J. Salmilehto,
    A.F. Morpurgo, and P.J. Hakonen,
    To be published in J. Low Temp. Phys.

2) Electron-phonon and electron-electron interactions in organic field effect      transistors,
    S. Fratini, A.F. Morpurgo, and S. Ciuchi,
    To be published in J. Phys. Chem. Sol.

3) Metallic Conduction at Organic Charge-Transfer Interfaces,
    H. Alves, A.S. Molinari, H. Xie, and A.F. Morpurgo,
    Nature Materials 7, 574 (2008)

4) Shot noise in ballistic graphene,
    R. Danneau, F.Wu, M.F. Craciun, S. Russo, M.Y. Tomi, J. Salmilehto,
    A.F. Morpurgo, P.J. Hakonen,
    Phys. Rev. Lett. 100, 196802 (2008)

5) Quantitative analysis of electronic transport through weakly coupled      metal/organic interfaces,
    A. S. Molinari, I. Gutierrez Lezama, P. Parisse, T. Takenobu, Y. Iwasa, and
    A.F. Morpurgo,
    Appl. Phys. Lett. 92, 133303 (2008)

6) Current saturation and Coulomb interactions in rubrene single crystal      transistors,
    S. Fratini, H. Xie, I.N. Hulea, S. Ciuchi, and A.F. Morpurgo,
    New. J. Phys. 10, 033031 (2008)

7) Tuning electron-phonon and Coulomb interactions in organic field effect
     transistors,

    S. Fratini, A.F. Morpurgo, and S. Ciuchi,
    Phys. Stat. Sol. C 5, 718 (2008)

8) Observation of Aharonov-Bohm conductance oscillations in graphene,
    S.Russo, J.B. Oostinga, D. Wehenkel, H.B.Heersche, S. Shams Sobhani,
    L.M.K. Vandersypen, and A.F.Morpurgo,
    Phys. Rev. B 77,085413 (2008)

9) Topological confinement in bilayer graphene,
    I. Martin, Ya. M. Blanter, and A.F. Morpurgo,
    Phys. Rev. Lett. 100, 036804 (2008)

10) Gate-induced insulating state in bilayer grapheme devices,
    J.B. Oostinga, H.B. Heersche, L.Liu, A.F. Morpurgo, and L.M.K. Vandersypen,
    Nature Materials 7, 151 (2008)

^

2007:

1) Aharonov-Bohm effect and broken valley-degeneracy in a graphene ring,
    P.Recher, B. Trauzettel, Ya. M. Blanter, C.W.J. Beenakker, and A.F. Morpurgo,
    Phys. Rev. B 76, 235404 (2007)

2) Magnetic Blue,
    J. van den Brink and A.F. Morpurgo,
    Nature 450, 177 (2007)

3) Manifestations of Phase Coherent Transport in Graphene,
    H.B. Heersche, P. Jarillo-Herrero, J. Oostinga, L.M.K. Vandersypen, and
    A.F.Morpurgo,
    Eur. Phys. J. Special Topics 148, 27 (2007)

4) Adiabatic Quantum Pumping at the Josephson Frequency,
    S. Russo, J. Tobiska, T.M. Klapwijk, and A.F. Morpurgo,
    Phys. Rev. Lett. 99, 086601 (2007)

5) Induced Superconductivity in Graphene,
    H.B. Heersche, P. Jarillo-Herrero, J.B. Oostinga, L.M.K. Vandersypen, and
    A.F.Morpurgo,
    Solid State Communications 143, 72 (2007)

6) Bias-dependent Contact Resistance in Rubrene Single-Crystal Field Effect
    Transistors,
    A. Molinari, I. Gutierrez, I.N. Hulea, S. Russo, and A.F. Morpurgo,
    Appl. Phys. Lett. 90, 212103 (2007)

7) Bipolar Supercurrent in Graphene,
    H.B. Heersche, P. Jarillo-Herrero, J.B. Oostinga, L.M.K. Vandersypen, and
    A.F.Morpurgo,
    Nature 446, 56 (2007)

8) Photon-assisted electron transport in graphene: Scattering theory analysis
    B. Trauzettel, Ya. M. Blanter, and A.F. Morpurgo,
    Phys. Rev. B 75, 035305 (2007)

^

2006:

1) Potassium Phthalocyanine (KPc): One-Dimensional Molecular Stacks
     Bridged by K+ Ions,

    S. Margadonna, K. Prassides, Y. Iwasa, M.F. Craciun, S. Rogge, and
    A.F. Morpurgo,
    Inorg. Chem. 45, 10472 (2006)

2) Tunable Frohlich Polarons in Organic Single-Crystal Transistors,
    I.N.Hulea, S. Fratini, H.Xie, C.F. Mulder, N.N. Iossad, G. Rastelli, S.Ciuchi, and
    A.F. Morpurgo,
    Nature Materials 5,982 (2006)

3) Electrostatic Modification of Novel Materials,
    C.H. Ahn, A. Bhattacharya, A.M. Goldman, M. Di Ventra, J.N. Eckstein,
    C.D. Frisbie, M.E. Gershenson, I.H. Inoue, J. Mannhart, A. Millis, A.F. Morpurgo,
    D. Natelson, and J.M. Triscone,
    Rev. Mod. Phys. 78, 1185 (2006)

4) Intervalley scattering, long-range disorder, and effective time reversal
     symmetry breaking in graphene,

    A.F. Morpurgo and F. Guinea,
    Phys. Rev. Lett. 97, 196804 (2006)

5) Nanospintronics with Carbon Nanotubes,
    A. Cottet, T. Kontos, S. Sahoo, H.T. Man, M.S. Choi, W. Belzig, C. Bruder,
    A.F. Morpurgo, and C. Schonenberger,
    Semicon. Sci. Tech. 21, S78 (2006)

6) Colloquium: Electronic Transport in Single-Crystal Organic Transistors,
    M.E. Gershenson, V. Podzorov, and A.F. Morpurgo,
    Rev. Mod. Phys. 78, 973 (2006)

7) Observation of non-local Andreev Reflection in normal
     metal/superconductor structures,

    S. Russo, M. Kroug, T.M. Klapwijk, A.F. Morpurgo,
    AIP Conf. Proc. 850, 877 (2006)

8) Transport through a Single Ferromagnetic Domain of (Ga,Mn)As,
    S.Russo, S.T.B. Goennenwein, A.F. Morpurgo, T.M. Klapwijk, W. van Roy, and
    J. De Boeck,
    AIP Conf. Proc. 850, 1275 (2006)

9) Spin-dependent quantum interference in single-wall carbon nanotubes with
     ferromagnetic contacts,

    H.T. Man, I.J.W. Wever, and A.F. Morpurgo,
    Phys. Rev. B 73, 241401 (2006)

10) Reproducible Low Contact Resistance in Rubrene Single-Crystal
     Field-Effect Transistors with Nickel Electrodes,

    I.N. Hulea, S. Russo, A. Molinari, and A.F. Morpurgo,
    Appl. Phys. Lett. 88, 113512 (2006)

11) Electronic Transport through electron-doped Metal-Phthalocyanine
     Materials,

    M.F. Craciun, S. Rogge, M.J.L. den Boer, S. Margadonna, K. Prassides, Y. Iwasa,
    and A.F. Morpurgo,
    Adv. Mat. 18, 320 (2006)

^

2005:

1) Correlation between molecular orbitals and doping-dependence of the
     electrical conductivity in electron-doped Metal-Phthalocyanine compounds,

    M.F. Craciun, S. Rogge, A.F. Morpurgo,
    J. Am. Chem. Soc. (Communications) 127, 12210 (2005)

2) Influence of Surface Traps on Space Charge Limited Current,
    R.W.I. de Boer and A.F. Morpurgo,
    Phys. Rev. B 72, 073207 (2005)

3) Sample-specific and Ensemble-averaged Magnetoconductance of Individual
     Single-Wall Carbon Nanotubes,

    H.T. Man and A.F. Morpurgo,
    Phys. Rev. Lett. 95, 026801 (2005)

4) Experimental observation of bias-dependent non-local Andreev Reflection,
    S. Russo, M. Kroug, T.M. Klapwijk, and A.F. Morpurgo,
    Phys. Rev. Lett. 95, 027002 (2005)

5) Ambipolar Cu- and Fe-Phthalocyanine single-crystal field-effect
     transistors,

    R.W.I. de Boer, A.F. Stassen, M.F. Craciun, A. Molinari, S. Rogge, and
    A.F. Morpurgo,
    Appl. Phys. Lett. 86, 262109 (2005)

6) Quantitative Study of Magnetotransport through a (Ga,Mn)As Single
     Ferromagnetic Domain,

    S.T.B. Goennenwein, S. Russo, A.F. Morpurgo, T.M. Klapwijk, W. van Roy,
    and J.de Boeck,
    Phys. Rev. B 71, 193306 (2005)

7) Universal spin-induced Time Reversal Symmetry breaking in Rashba two-
     dimensional electron gases,

    F.E. Meijer, A.F. Morpurgo, T.M. Klapwijk, and J. Nitta,
    Phys. Rev. Lett. 94, 186805 (2005)

8) Electronic Correlations in Oligo-thiophene Molecular Crystals,
    J. van den Brink, G. Brocks, and A.F. Morpurgo,
    J. Mag. Mag. Mat. 290-291, 294 (2005)

9) Influence of the gate leakage current on the stability of organic
     single-crystal field-effect transistors,

    R.W.I. de Boer, N.N. Iosad, A.F. Stassen, T.M. Klapwijk, and A.F. Morpurgo,
    Appl. Phys. Lett. 86, 0321103 (2005)

10) Organic Single-Crystal Field-Effect Transistors,
     R.W.I. de Boer, M.E. Gershenson, A.F. Morpurgo, and V. Podzorov,
     “Physics of Organic Semiconductors”, Edited by W. Brutting, Wiley-VCH (2005)

^

2004:

1) Competition between Spin-Orbit Interaction and Zeeman Coupling in
     Rashba 2DEGs,

    F.E. Meijer, A.F. Morpurgo, T.M. Klapwijk, T. Koga, and J. Nitta,
    Phys. Rev. B 70, 201307 (2004)

2) Influence of the gate dielectric on the mobility of single rubrene crystal
     field-effect transistors,

    A.F. Stassen, R.W.I. de Boer, N.N. Iosad, and A.F. Morpurgo,
    Appl. Phys. Lett. 85, 3899 (2004)

3) Electronic correlations in oligo-acenes and -thiophene organic molecular
     crystals,

    G. Brocks, J. van den Brink, and A.F. Morpurgo,
    Phys. Rev. Lett. 93, 146405 (2004)

4) Dielectric response of sputtered transition metal oxides,
    N.N. Iosad, E.V. Morks, G.J. Ruis, A.F. Morpurgo, N.M. van der Pers,
    P.F.A. Alkemade, and V.G.M. Sivel,
    J. Appl. Phys. 95, 8087 (2004)

5) Organic Single-Crystal Field-Effect Transistors,
    R.W.I de Boer, M.E. Gershenson, A.F. Morpurgo, and V. Podzorov,
    Phys. Stat. Sol. A 201, 1302 (2004)

6) Electron transport and tunnelling spectroscopy in alkali doped metal
     phthalocyanines,

    M. F. Craciun, S. Rogge, M.J.L. den Boer, T.M. Klapwijk, and A.F. Morpurgo,
    J. Phys. IV 114, 607 (2004)

7) Experiments on Aharonov-Bohm conductance oscillations: a statistical
     analysis of the averaged Fourier spectrum,

    F.E. Meijer, J. Nitta, T. Koga, A.F. Morpurgo, and T.M. Klapwijk,
    Physica E 22, 402 (2004)

8) Space charge limited transport and time of flight measurements in
     tetracene single crystals: a comparative study,

    R.W.I. de Boer, M. Jochemsen, T.M. Klapwijk, A.F. Morpurgo, J. Niemax,
    A. Tripathi, and J. Pflaum,
    J. Appl. Phys. 95, 1196 (2004)

9) Statistical significance of fine structure in the frequency spectrum of
     Aharonov-Bohm conductance oscillations,

    F.E. Meijer, A.F. Morpurgo, T.M. Klapwijk, J. Nitta, and T. Koga,
    Phys. Rev. B 69, 035308 (2004)

^

2003:

1) Doping-dependent charge injection into regio-regular
     poly(3-hexylthiophene)

    D.B.A. Rep, A. F. Morpurgo, and T.M. Klapwijk,
    Org. Electron. 4, 201 (2003)

2) Field effect transistors on tetracene single crystals,
    R.W.I. de Boer, T.M. Klapwijk, and A.F. Morpurgo,
    Appl. Phys. Lett. 83, 4345 (2003)

3) Mobile ionic impurities in organic semiconductors,
    D.B.A. Rep, A.F. Morpurgo, W. Sloof, and T.M. Klapwijk,
    J. Appl. Phys. 93, 2082 (2003)

4) Scanning Tunnelling Microscopy and Spectroscopy on Alkali Doped Copper
     Phthalocyanine,

    M. F. Craciun, S.Rogge, D.A.Wismeijer, M.J.L. den Boer, T.M. Klapwijk,
    and A.F. Morpurgo,
    AIP Conf. Proc. 696, 489 (2003)

^

2002:

1) One-dimensional ring with Rashba spin-orbit interaction: determination of
     the correct hamiltonian,

    F.E. Meijer, A. F. Morpurgo, and T. M. Klapwijk,
    Phys. Rev. B 66, 033107 (2002)

2) Direct observation of the superconducting gap of Sr2RuO4,
    M.D. Upward, L.P. Kouwenhoven, A.F. Morpurgo, N. Kikugawa, Z.Q.Mao,
    and Y. Maeno,
    Phys. Rev. B 65, 220512 (2002)

3) Nanometer-spaced electrodes with calibrated separation,
    Y.Kervennic, H.S.J.van der Zant, A.F.Morpurgo, L.Gurevich,
    and L.P. Kouwenhoven,
    Appl. Phys. Lett. 80, 321 (2002)

^

2001:

1) An Ultra-Low Temperature Scanning Tunnelling Microscope,
    M.D. Upward, J.W. Janssen, L. Gurevich, A.F. Morpurgo, and L.P. Kouwenhoven,
    Appl. Phys. A 72, S253 (2001)

^

2000:

1) Nanofabrication of Self-Assembled Molecular Scale Electronics,
    L. G. M. Olofsson, S. H. Magnus Persson, A. F. Morpurgo, C. M. Marcus,
    D. Golubev, L. K. Gunnarson, and Y. Yao,
    J. Low Temp. Phys. 118, 343 (2000)

^

1999:

1) Reply to comment on: Ensemble average spectrum of Aharonov-Bohm
     conductance oscillations: evidence for a spin-orbit induced Berry's phase

    A. F. Morpurgo, J. P. Heida, T. M. Klapwijk, B. J. van Wees, and G. Borghs ,
    Phys.Rev.Lett. 83, 1701 (1999)

2) Superconducting Proximity Effect in Single Wall Carbon Nanotubes,
    A. F. Morpurgo, J. Kong, C. M.Marcus, and H. Dai ,
    Physica B 280, 382 (2000)

3) Gate-Controlled Superconducting Proximity Effect in Carbon Nanotubes,
    A .F. Morpurgo, J. Kong, C. M.Marcus, and H. Dai,
    Science 286, 263 (1999)

4) Energy Spectroscopy of Josephson Supercurent,
    A. F. Morpurgo, J. J. A. Baselmans, B. J. van Wees, and T. M. Klapwjik,
    J. Low Temp. Phys. 118, 637 (2000)

5) Synthesis and Electrical Properties of Individual Single-Walled Carbon
     Nanotubes,

    J. Kong, C. Zhou, A. F. Morpurgo, H. T. Soh, C. F. Quate, C.M. Marcus, H. Dai,
    Appl. Phys. A-Mater 69, 305 (1999)

6) Tunable supercurrents in Superconductor-Normal Metal-Superconductor
     Josephson Junctions,

    J. J. A. Baselmans, A. F. Morpurgo, B. J. van Wees, and T. M. Klapwijk,
    Superlattice Microstr. 25, 973 (1999)

7) Integrated Nanotubes Circuits: Controlled Growth and Ohmic Contacts to
    Carbon Nanotubes,

    H. T. Soh, C. F. Quate, A. F. Morpurgo, C. M. Marcus, J. Kong, and H. Dai,
    Appl. Phys. Lett. 75,627 (1999)

8) Controlled fabrication of metallic electrodes with atomic separation,
    A. F. Morpurgo, C. M. Marcus, and D. B. Robinson,
    Appl. Phys. Lett. 74, 2084 (1999)

9) Reversing the direction of the Josephson current in a controllable p junction
    J. J. A. Baselmans, A. F. Morpurgo, B. J. van Wees, and T. M. Klapwijk,
    Nature 397, 43 (1999)

^

1998:

1) Experiments on Aharonov-Bohm effect under the influence of uniform
     spin-orbit interaction: possible observation of Berry's phase in electronic
      transport,

    A. F. Morpurgo, J. P. Heida, B. J. van Wees, T. M. Klapwijk, and G. Borghs,
    Physica B 249-251, 509 (1998)

2) Energy spectroscopy of Andreev levels between superconductors,
    A. F. Morpurgo, B. J. van Wees, T. M. Klapwijk, and G. Borghs ,
    Physica B 249-251, 458 (1998)

3) Experiments on Aharonov-Bohm effect under the influence of uniform
     spin-orbit interaction: possible observation of Berry's phase in electronic
      transport,

    A. F. Morpurgo, J. P. Heida, B. J. van Wees, T. M. Klapwijk, and G. Borghs,
    Solid State Electronics 42, 1099 (1998)

4) Hot electron tunable supercurrent,
    A. F. Morpurgo, T. M. Klapwijk, and B .J. van Wees,
    Appl.Phys.Lett. 72, 966 (1998)

5) Ensemble average spectrum of Aharonov-Bohm conductance oscillations:
     evidence for a spin-orbit induced Berry's phase,

    A. F. Morpurgo, J. P. Heida, B. J. van Wees, T. M. Klapwijk, and G. Borghs,
    Phys.Rev.Lett. 80, 1050 (1998)

^

1997:

1) Energy spectroscopy of Andreev levels between superconductors,
    A. F. Morpurgo, B. J. van Wees, T. M. Klapwijk, and G. Borghs,
    Phys.Rev.Lett. 79, 4010 (1997)

2) Phase conjugated Andreev backscattering in 2 dimensional ballistic
      cavities,

    A. F. Morpurgo, S. Holl, B. J. van Wees, T. M. Klapwijk, and G. Borghs,
    Phys.Rev.Lett. 78, 2636 (1997)

3) Submicron processing of InAs based quantum wells: a new highly selective
     wet etchant for AlSb,

    A. F. Morpurgo, B. J. van Wees, T. M. Klapwijk, and G. Borghs,
    Appl.Phys.Lett. 70, 1435 (1997)

^

1996 and older:

1) Ballistic channels in InAs 2 dimensional electron gas by means of a new
      highly selective etching technique,

    A. F.Morpurgo, B. J. van Wees, T. M. Klapwijk, and G, Borghs,
    Proceedings of the XXIII Conference on the Physics of Semiconductors,
    Eds. M.Scheffler and R.Zimmerman, Berlin 1996, World Scientific, p.2211

2) Comment on Phase controlled mesoscopic structures with superconducting
     mirrors,

    B. J. van Wees, S. G. den Hartog, and A. F. Morpurgo ,
    Phys.Rev.Lett. 76, 402 (1996)

3) Tunnelling through a superconducting double barrier as a probe of bound
     states in a superconducting quantum well,

    A. F. Morpurgo,
    Proceedings of the ICTP-NATO workshop in Submicron Quantum Dynamics,
    June-July 1994, Trieste

4) Tunnelling through a superconducting double barrier and the resonant
     suppression of Andreev reflection,

    A. F. Morpurgo and F. Beltram,
    Phys.Rev. B 50, 1325 (1994)

5) Intergranular and intragranular current distribution in sintered YBCO from
     transport and inductive measurements,

    M. Basso, L. Lambardi, M. Marinelli, S. Marini, and A. Morpurgo,
    App. Supercond. 2, 71 (1994)

^
 
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