Applied Physics Letters, 0003-6951

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  1. Multispectral guided fluorescence diffuse optical tomography using upconverting nanoparticles

    Pontus Svenmarker, Can Xu, Haichun Liu, Xia Wu & Stefan Andersson-Engels, 2014, I: Applied Physics Letters. 104, 7, 073703.

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

  2. Multi-MHz time-of-flight electronic bandstructure imaging of graphene on Ir(111)

    C. Tusche, P. Goslawski, D. Kutnyakhov, M. Ellguth, K. Medjanik, H. J. Elmers, S. Chernov, R. Wallauer, D. Engel, A. Jankowiak & G. Schönhense, 2016 jun 27, I: Applied Physics Letters. 108, 26, 261602.

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  3. Mobility of near surface MOVPE grown InGaAs/InP quantum wells

    Lasse Södergren, Navya Sri Garigapati, Mattias Borg & Erik Lind, 2020 jul 6, I: Applied Physics Letters. 117, 1, 013102.

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  4. Mn diffusion in Ga1-xMnxAs/GaAs superlattices

    Anders Mikkelsen, Lassana Ouattara, Henrik Davidsson, Edvin Lundgren, Janusz Sadowski & O Pacherova, 2004, I: Applied Physics Letters. 85, 20, s. 4660-4662

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  5. Mixing thermodynamics of TM1-xGdxN (TM=Ti, Zr, Hf) from first principles

    B. Alling, Carina Höglund, Richard Hall-Wilton & L. Hultman, 2011, I: Applied Physics Letters. 98, 24, 241911.

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  6. Microscopic four-point-probe resistivity measurements of shallow, high density doping layers in silicon

    Craig M. Polley, Warrick R. Clarke, Jill A. Miwa, Michelle Y. Simmons & Justin Wells, 2012, I: Applied Physics Letters. 101, 26, 262105.

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  7. Metalorganic vapor phase epitaxy-grown GaP/GaAs/GaP and GaAsP/GaAs/GaAsP n-type resonant tunnelling diodes

    Lars-Erik Wernersson, Magnus Borgström, Boel Gustafson, Anders Gustafsson, I Pietzonka, Mats-Erik Pistol, T Sass, Werner Seifert & Lars Samuelson, 2002, I: Applied Physics Letters. 80, 10, s. 1841-1843

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  8. Measurements of the spin-orbit interaction and Landé g factor in a pure-phase InAs nanowire double quantum dot in the Pauli spin-blockade regime

    Jiyin Wang, Shaoyun Huang, Zijin Lei, Dong Pan, Jianhua Zhao & H. Q. Xu, 2016 aug 1, I: Applied Physics Letters. 109, 5, 053106.

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  9. Measurements of 3D slip velocities and plasma column lengths of a gliding arc discharge

    Jiajian Zhu, Jinlong Gao, Andreas Ehn, Marcus Aldén, Zhongshan Li, Dmitry Moseev, Yukihiro Kusano, Mirko Salewski, Andreas Alpers, Peter Gritzmann & Martin Schwenk, 2015, Applied Physics Letters, 106, 4, s. 044101.

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  10. Magnetoresistance studies on Co/AlOX/Au and Co/AlOX/Ni/Au tunnel structures

    Ruisheng Liu, C. M. Canali, Lars Samuelson & H Pettersson, 2008, I: Applied Physics Letters. 93, 20, 203107.

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  11. Magnetoresistance in Mn ion-implanted GaAs:Zn nanowires

    Waldomiro Paschoal, Sandeep Kumar, Daniel Jacobsson, A. Johannes, Vishal Jain, C. M. Canali, A. Pertsova, C. Ronning, Kimberly Dick Thelander, Lars Samuelson & Håkan Pettersson, 2014, I: Applied Physics Letters. 104, 15, 153112.

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  12. Luminescence polarization of ordered GaInP/InP islands

    Ulf Håkanson, Valéry Zwiller, Mikael Johansson, T Sass & Lars Samuelson, 2003, I: Applied Physics Letters. 82, 4, s. 627-629

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  13. Low noise polymeric nanomechanical biosensor

    Montserrat Calleja, Javier Tamayo, Maria Tenje & Anja Boisen, 2006, I: Applied Physics Letters. 88, 11, 113901.

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  14. Layered structure around an extended gliding discharge column in a methane-nitrogen mixture at high pressure

    Chengdong Kong, Jinlong Gao, Zhongshan Li, Marcus Aldén & Andreas Ehn, 2019, I: Applied Physics Letters. 114, 19, s. 194102

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  15. Laser spectroscopy of gas confined in nanoporous materials

    Tomas Svensson & Zhijian Shen, 2010, I: Applied Physics Letters. 96, 2, 021107.

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  16. Laser spectroscopic gas concentration measurements in situations with unknown optical path length enabled by absorption line shape analysis

    Patrik Lundin, Liang Mei, Stefan Andersson-Engels & Sune Svanberg, 2013, I: Applied Physics Letters. 103, 3, 034105.

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  17. Large magnetoresistance in Co/Ni/Co ferromagnetic single electron transistors

    Ruisheng Liu, H. Pettersson, L. Michalak, C. M. Canali, Dmitry Suyatin & Lars Samuelson, 2007, I: Applied Physics Letters. 90, 12

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  18. Large area quasi-free standing monolayer graphene on 3C-SiC(111)

    C. Coletti, K. V. Emtsev, Alexei Zakharov, T. Ouisse, D. Chaussende & U. Starke, 2011, I: Applied Physics Letters. 99, 8, 081904.

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  19. Large-area microfocal spectroscopic ellipsometry mapping of thickness and electronic properties of epitaxial graphene on Si- and C-face of 3C-SiC(111)

    V. Darakchieva, A. Boosalis, Alexei Zakharov, T. Hofmann, M. Schubert, T. E. Tiwald, T. Iakimov, R. Vasiliauskas & R. Yakimova, 2013, I: Applied Physics Letters. 102, 21, 213116.

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  20. Investigations of InAs surface dots on InP

    Carl Ellström, Johanna Trägårdh, Lars Samuelson, Werner Seifert, Mats-Erik Pistol, S Lemeshko & C Pryor, 2006, I: Applied Physics Letters. 89, 3, 033111.

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  21. Investigation of electron wave function hybridization in Ga0.25In0.75As/InP arrays

    T. P. Martin, M. S. Fairbanks, B. C. Scannell, C. A. Marlow, Heiner Linke & R. P. Taylor, 2009, I: Applied Physics Letters. 95, 18, 182105.

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  22. Interface composition of InAs nanowires with Al2O2 and HfO2 thin films

    Rainer Timm, Martin Hjort, Alexander Fian, Mattias Borg, Claes Thelander, Jesper N Andersen, Lars-Erik Wernersson & Anders Mikkelsen, 2011, I: Applied Physics Letters. 99, 22, s. 222907-1-222907-3

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  23. Integrated optical readout for miniaturization of cantilever-based sensor system

    Maria Nordström, Dan A. Zauner, Montserrat Calleja, Jörg Hübner & Anja Boisen, 2008, I: Applied Physics Letters. 91, 10

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  24. Infrared radiation generated by quasi-phase-matched difference-frequency mixing in a periodically poled lithium niobate waveguide

    E. J Lim, H. M Hertz, M. L Bortz & M. M Fejer, 1991, I: Applied Physics Letters. 59, 18, s. 2207-2209

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  25. Influence of stray fields on the switching-field distribution for bit-patterned media based on pre-patterned substrates

    Bastian Pfau, C. M. Guenther, E. Guehrs, T. Hauet, T. Hennen, S. Eisebitt & O. Hellwig, 2014, I: Applied Physics Letters. 105, 13, 132407.

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  26. Influence of plasmons on terahertz conductivity measurements

    Han-Kwang Nienhuys & Villy Sundström, 2005, I: Applied Physics Letters. 87, 1, s. 012101-012101-3

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  27. Influence of laser irradiated spot size on energetic electron injection and proton acceleration in foil targets

    M. Coury, D. C. Carroll, A. P. L. Robinson, X. H. Yuan, C. M. Brenner, Matthias Burza, R. J. Gray, M. N. Quinn, K. L. Lancaster, Y. T. Li, X. X. Lin, O. Tresca, Claes-Göran Wahlström, D. Neely & P. McKenna, 2012, I: Applied Physics Letters. 100, 7, 074105.

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  28. Induced magnetism of carbon atoms at the graphene/Ni(111) interface

    M. Weser, Y. Rehder, K. Horn, M. Sicot, M. Fonin, Alexei Preobrajenski, E. N. Voloshina, E. Goering & Yu. S. Dedkov, 2010, I: Applied Physics Letters. 96, 1, 012504.

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  29. Individually addressable double quantum dots formed with nanowire polytypes and identified by epitaxial markers

    D. Barker, S. Lehmann, L. Namazi, M. Nilsson, C. Thelander, K. A. Dick & V. F. Maisi, 2019, I: Applied Physics Letters. 114, 18, 183502.

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  30. Increased absorption in InAsSb nanowire clusters through coupled optical modes

    Johannes Svensson, Yang Chen, Nicklas Anttu, Mats Erik Pistol & Lars Erik Wernersson, 2017 feb 20, I: Applied Physics Letters. 110, 8, 081104.

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  31. InAs quantum dots and quantum wells grown on stacking-fault controlled InP nanowires with wurtzite crystal structure

    Kenichi Kawaguchi, Magnus Heurlin, David Lindgren, Magnus Borgström, Martin Ek & Lars Samuelson, 2011, I: Applied Physics Letters. 99, 13

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  32. InAs nanowire metal-oxide-semiconductor capacitors

    Stefano Roddaro, Kristian Storm, Gvidas Astromskas, Lars Samuelson, Lars-Erik Wernersson, Olov Karlström & Andreas Wacker, 2008, I: Applied Physics Letters. 92, 25, 253509.

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  33. InAs hole inversion and bandgap interface state density of 2 x 10(11) cm(-2) eV(-1) at HfO2/InAs interfaces

    C. H. Wang, S. W. Wang, G. Doornbos, G. Astromskas, K. Bhuwalka, R. Contreras-Guerrero, M. Edirisooriya, J. S. Rojas-Ramirez, G. Vellianitis, R. Oxland, M. C. Holland, C. H. Hsieh, Peter Ramvall, Erik Lind, W. C. Hsu, Lars-Erik Wernersson, R. Droopad, M. Passlack & C. H. Diaz, 2013, I: Applied Physics Letters. 103, 14, 143510.

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  34. Impact of doping and diameter on the electrical properties of GaSb nanowires

    Aein S. Babadi, Johannes Svensson, Erik Lind & Lars Erik Wernersson, 2017 jan 30, I: Applied Physics Letters. 110, 5, 053502.

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  35. Image widening not only a question of tip sample convolution

    Jonas O. Tegenfeldt & Lars Montelius, 1995 dec 1, I: Applied Physics Letters. 1 s.

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  36. Hole doping of graphene supported on Ir(111) by AlBr3

    Nikolay Vinogradov, Konstantin Simonov, Alexei Zakharov, Justin Wells, A. V. Generalov, A. S. Vinogradov, N. Martensson & Alexei Preobrajenski, 2013, I: Applied Physics Letters. 102, 6, 061601.

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  37. High-resolution superconducting single-flux quantum comparator for sub-Kelvin temperatures

    A. M. Savin, J. P. Pekola, T. Holmqvist, Jessica C. Hassel, L. Grönberg, P. Helistö & A. Kidiyarova-Shevchenko, 2006, I: Applied Physics Letters. 89, 13, 133505.

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  38. High-gain Soft-x-ray Pumped Photoionization Laser in Zinc Vapor

    Hans Lundberg, J. J Macklin, W. T Silfvast & O. R Wood, 1984, I: Applied Physics Letters. 45, 4

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  39. High carrier mobility in low band gap polymer-based field-effect transistors

    MX Chen, X Crispin, E Perzon, MR Andersson, Tönu Pullerits, M Andersson, O Inganas & M Berggren, 2005, I: Applied Physics Letters. 87, 25

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  40. Growth of ultrathin ZrO2 films on Si(100): Film-thickness-dependent band alignment

    A Sandell, PG Karlsson, JH Richter, Jakob Blomquist, Per Uvdal & TM Grehk, 2006, I: Applied Physics Letters. 88, 13

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  41. Gradient Structures Interfacing Microfluidics and Nanofluidics

    Han Cao, Jonas Tegenfeldt, Robert Austin & Stephen Chou, 2002, I: Applied Physics Letters. 81, 16, s. 3058-3060

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  42. Gradient nanostructures for interfacing microfluidics and nanofluidics

    Han Cao, Jonas O. Tegenfeldt, Robert H. Austin & Stephen Y. Chou, 2002 okt 14, I: Applied Physics Letters. 81, 16, s. 3058-3060 3 s.

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  43. Gold nanoparticle single electron transistor with carbon nanotube leads

    Claes Thelander, Martin H. Magnusson, Knut Deppert, Lars Samuelson, Per Rugaard Poulsen, Jesper Nygård & Jørn Borggreen, 2001 sep 24, I: Applied Physics Letters. 79, 13, s. 2106-2108 3 s.

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  44. Gold-free GaAs/GaAsSb heterostructure nanowires grown on silicon

    S. Plissard, Kimberly Dick Thelander, X. Wallart & P. Caroff, 2010, I: Applied Physics Letters. 96, 12, 121901.

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  45. Giant anisotropic magnetoresistance in insulating ultrathin (Ga,Mn)As

    R. R. Gareev, A. Petukhov, M. Schlapps, Janusz Sadowski & W. Wegscheider, 2010, I: Applied Physics Letters. 96, 5

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  46. g-factor and exchange energy in a few-electron lateral InGaAs quantum dot

    Marcus Larsson, Henrik Nilsson, H. Hardtdegen & Hongqi Xu, 2009, I: Applied Physics Letters. 95, 19, 192112.

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  47. Generating visible single photons on demand with single InP quantum dots

    V Zwiller, T Aichele, Werner Seifert, Jonas Persson & O Benson, 2003, I: Applied Physics Letters. 82, 10, s. 1509-1511

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  48. Generating positrons with femtosecond-laser pulses

    C Gahn, G. D Tsakiris, G Pretzler, K. J Witte, C Delfin, Claes-Göran Wahlström & D Habs, 2000, I: Applied Physics Letters. 77, 17, s. 2662-2664

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