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1
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19044362545
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7×7 reconstruction on si(111) resolved in real space
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G. Binnig, H. Rohrer, Ch. Gerber and E. Weibel,.7×7 Reconstruction on Si(111) Resolved in Real Space,. Phys. Rev. Lett., 50 (1983) pp. 120-123.
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Binnig, G.1
Rohrer, H.2
Gerber, C.3
Weibel, E.4
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2
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0012618901
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Atomic Force microscope
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G. Binnig, C. F. Quate, and C. Gerber,.Atomic Force Microscope,. Phys. Rev. Lett., 56 (1986) pp. 930-933.
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Phys. Rev. Lett.
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Binnig, G.1
Quate, C.F.2
Gerber, C.3
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3
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0029296702
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TIP-BASED dATA sTORAGE uSING mICROMECHANICAL cANTI.LEVERS
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H. J. Mamin, L. S. Fan, S. Hoen, and D. Rugar,.Tip-based Data Storage Using Micromechanical Canti.levers,. Sensors and Actuators A, 48 (1995), pp. 215-219.
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Mamin, H.J.1
Fan, L.S.2
Hoen, S.3
Rugar, D.4
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5
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0029407625
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High-density data storage using proximal probe techniques
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H. J. Mamin, B. D. Terris, L. S. Fan, S. Hoen, R. C. Barrett, and D. Rugar,.High-Density Data Storage Using Proximal Probe Techniques,. IBM J. Res. Develop., 39 (1995), pp. 681-700.
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Mamin, H.J.1
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Fan, L.S.3
Hoen, S.4
Barrett, R.C.5
Rugar, D.6
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6
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0032670557
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High-density data storage based on the atomic force microscope
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H. J. Mamin, R. P. Ried, B. D. Terris, and D. Rugar,.High-Density Data Storage Based on the Atomic Force Microscope,. Proc. IEEE, 87 (1999), pp. 1014-1027.
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Mamin, H.J.1
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Terris, B.D.3
Rugar, D.4
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7
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0032640075
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Vlsi-nems chip for afm data storage
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IEEE
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M. Despont, J. Brugger, U. Drechsler, U. Dürig, W. Häberle, M. Lutwyche, H. Rothuizen, R. Stutz, R. Widmer, G. Binnig, H. Rohrer, and P. Vettiger,.VLSI-NEMS Chip for AFM Data Storage,. in Technical Digest 12th IEEE Int.l Micro Electro Mechanical Systems Conf.MEMS.99. (IEEE, 1999), pp. 564-569.
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Lutwyche, M.6
Rothuizen, H.7
Stutz, R.8
Widmer, R.9
Binnig, G.10
Rohrer, H.11
Vettiger, P.12
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8
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0033704649
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The millipede-more than one thousand tips for future afm data storage
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P. Vettiger, M. Despont, U. Drechsler, U. Dürig, W. Häberle, M. I. Lutwyche, H. E. Rothuizen, R. Stutz, R. Widmer, and G. K. Binnig,.The.Millipede.-More than One Thousand Tips for Future AFM Data Storage,. IBM J. Res. Develop., 44 (2000), pp. 323-340.
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Lutwyche, M.I.6
Rothuizen, H.E.7
Stutz, R.8
Widmer, R.9
Binnig, G.K.10
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9
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20144384406
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The.millipede.nanotechnology entering data storage
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in press
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P. Vettiger, G. Cross, M. Despont, U. Drechsler, U. Dürig, B. Gotsmann, W. Häberle, M. A. Lantz, H. E. Rothuizen, R. Stutz, and G. K. Binnig,.The.Millipede.Nanotechnology Entering Data Storage,. IEEE Trans. Nanotechnol., vol. 1, no. 1 (2002, in press).
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Häberle, W.7
Lantz, M.A.8
Rothuizen, H.E.9
Stutz, R.10
Binnig, G.K.11
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10
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0033537520
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Afm cantilever arrays:A first step towards a terabit storage device
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M. Lutwyche, C. Andreoli, G. Binnig, J. Brugger, U. Drechsler, W. Häberle, H. Rohrer, H. Rothuizen, P. Vettiger, G. Yaralioglu, and C. Quate,.5×5 2D AFM Cantilever Arrays: A First Step Towards a Terabit Storage Device,. Sensors and Actuators A 73 (1999), pp. 89-94.
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Drechsler, U.5
Häberle, W.6
Rohrer, H.7
Rothuizen, H.8
Vettiger, P.9
Yaralioglu, G.10
Quate, C.11
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11
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0012986514
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Atomic force microscope-based data storage:Track servo and wear study
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B. D. Terris, S. A. Rishton, H. J. Mamin, R. P. Ried, and D. Rugar,.Atomic Force Microscope-Based Data Storage: Track Servo and Wear Study,. Appl. Phys. A, 66 (1998), pp. S809-S813.
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Rugar, D.5
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12
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84893809763
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these proceedings
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T. Loeliger, P. Bächtold, G. K. Binnig, G. Cherubini, U. Dürig, E. Eleftheriou, P. Vettiger, M. Uster, and H. Jäckel,.CMOS Sensor Array with Cell-Level Analog-to-Digital Conversion for Local Probe Data Storage,. these proceedings.
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CMOS Sensor Array with Cell-Level Analog-to-Digital Conversion for Local Probe Data Storage
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Loeliger, T.1
Bächtold, P.2
Binnig, G.K.3
Cherubini, G.4
Dürig, U.5
Eleftheriou, E.6
Vettiger, P.7
Uster, M.8
Jäckel, H.9
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