Applied Physics Letters, 0003-6951

Tidskrift

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  1. Two-well quantum cascade laser optimization by non-equilibrium Green's function modelling

    M. Franckié, L. Bosco, M. Beck, C. Bonzon, E. Mavrona, G. Scalari, A. Wacker & J. Faist, 2018 jan 8, I: Applied Physics Letters. 112, 2, 021104.

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  2. Transport properties of three-terminal ballistic junctions realized by focused ion beam enhanced etching in InGaAs/InP

    Martin Frimmer, Jie Sun, Ivan Maximov & Hongxing Xu, 2008, I: Applied Physics Letters. 93, 13, 133110.

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  3. Combined photo- and electroreflectance of multijunction solar cells enabled by subcell electric coupling

    D. Fuertes Marrón, E. Barrigón, M. Ochoa & I. Artacho, 2019 apr 15, I: Applied Physics Letters. 114, 15, s. 153501

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  4. Single electron pumping in InAs nanowire double quantum dots

    Andreas Fuhrer, Carina Fasth & Lars Samuelson, 2007, I: Applied Physics Letters. 91, 5, s. 052109-1-052109-3

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  5. 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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  6. GaSb nanowire single-hole transistor

    Bahram Ganjipour, Henrik Nilsson, Mattias Borg, Lars-Erik Wernersson, Lars Samuelson, Hongqi Xu & Claes Thelander, 2011, I: Applied Physics Letters. 99, 26, 262104.

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  7. 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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  8. Fabrication and mechanical characterization of ultrashort nanocantilevers

    Sara Ghatnekar-Nilsson, Eva-Lena Sarwe & Lars Montelius, 2003, I: Applied Physics Letters. 83, 5, s. 990-992

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  9. On the nature of the Mn-related states in the band structure of (Ga,Mn)As alloys via probing the E-1 and E-1 + Delta(1) optical transitions

    L. Gluba, O. Yastrubchak, G. Sek, W. Rudno-Rudzinski, Janusz Sadowski, M. Kulik, W. Rzodkiewicz, M. Rawski, T. Andrearczyk, J. Misiewicz, T. Wosinski & J. Zuk, 2014, I: Applied Physics Letters. 105, 3, 032408.

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  10. Ballistic one-dimensional transport in InAs nanowires monolithically integrated on silicon

    J. Gooth, V. Schaller, S. Wirths, Heinz Schmid, M. Borg, N. Bologna, S. Karg & H. Riel, 2017 feb 20, I: Applied Physics Letters. 110, 8, 083105.

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  11. Coulomb blockade from the shell of an InP-InAs core-shell nanowire with a triangular cross section

    D. J.O. Göransson, M. Heurlin, B. Dalelkhan, S. Abay, M. E. Messing, V. F. Maisi, M. T. Borgström & H. Q. Xu, 2019 feb 4, I: Applied Physics Letters. 114, 5, 053108.

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  12. Time-gated x-ray tomography

    M Gratz, L Kiernan, C. G Wahlstrom, Sune Svanberg & K Herrlin, 1998, I: Applied Physics Letters. 73, 20, s. 2899-2901

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  13. Determination of diffusion lengths in nanowires using cathodoluminescence

    Anders Gustafsson, Jessica Bolinsson, Niklas Sköld & Lars Samuelson, 2010, I: Applied Physics Letters. 97, 7, 072114.

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  14. Reevaluation of blueshifts introduced by lateral confinement in quantum-well wire structures

    Anders Gustafsson, X Liu, Ivan Maximov, Lars Samuelson & Werner Seifert, 1993, I: Applied Physics Letters. 12, 15, s. 1709-1711

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  15. Single InP/GaInP quantum dots studied by scanning tunneling microscopy and scanning tunneling microscopy induced luminescence

    Ulf Håkanson, Mikael Johansson, Jonas Persson, Jonas Johansson, Mats-Erik Pistol, Lars Montelius & Lars Samuelson, 2002, I: Applied Physics Letters. 80, 3, s. 494-496

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  16. 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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  17. Photon mapping of quantum dots using a scanning tunneling microscope

    Ulf Håkanson, Mikael Johansson, Magnus Holm, C Pryor, Lars Samuelson, Werner Seifert & Mats-Erik Pistol, 2002, I: Applied Physics Letters. 81, 23, s. 4443-4445

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  18. Tunable surface plasma resonance frequency in Ag core/Au shell nanoparticles system prepared by laser ablation

    Huifeng Han, Yan Fang, Zhipeng Li & Hongxing Xu, 2008, I: Applied Physics Letters. 92, 2, 023116.

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  19. The c-axis thermal conductivity of graphite film of nanometer thickness measured by time resolved X-ray diffraction

    Maher Harb, Clemens von Korff Schmising, Henrik Enquist, Andrius Jurgilaitis, Ivan Maximov, P. V. Shvets, A. N. Obraztsov, D. Khakhulin, M. Wulff & Jörgen Larsson, 2012, I: Applied Physics Letters. 101, 23, 233108.

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  20. Electronic structure of epitaxial half-Heusler Co1-xNixTiSb across the semiconductor to metal transition

    S. D. Harrington, J. A. Logan, S. Chatterjee, S. J. Patel, A. D. Rice, M. M. Feldman, C. M. Polley, T. Balasubramanian, A. Mikkelsen & C. J. Palmstrøm, 2018 aug 31, I: Applied Physics Letters. 113, 9, 092103.

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  21. Au wetting and nanoparticle stability on GaAs(111)B

    Emelie Hilner, Anders Mikkelsen, Jessica Bolinsson, Jesper N Andersen, Edvin Lundgren, Alexei Zakharov, H. Yi & P. Kratzer, 2006, I: Applied Physics Letters. 89, 251912.

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  22. Optical microprism cavities based on dislocation-free GaN

    Filip Hjort, Maryam Khalilian, Jörgen Bengtsson, Marcus Bengths, Johan Gustavsson, Anders Gustafsson, Lars Samuelson & Åsa Haglund, 2020 dec 9, I: Applied Physics Letters. 117, 23, 8 s., 231107.

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  23. Quantum-dot thermometry

    E. A. Hoffmann, N. Nakpathomkun, A. I. Persson, H. Linke, Henrik Nilsson & Lars Samuelson, 2007, I: Applied Physics Letters. 91, 25, 252114.

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  24. Bias mediated tuning of the detection wavelength in asymmetrical quantum dots-in-a-well infrared photodetectors

    L. Hoglund, P. O. Holtz, Håkan Pettersson, C. Asplund, Q. Wang, H. Malm, S. Almqvist, E. Petrini & J. Y. Andersson, 2008, I: Applied Physics Letters. 93, 20, 203512.

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  25. Origin of photocurrent in lateral quantum dots-in-a-well infrared photodetectors

    L Hoglund, C Asplund, Q Wang, S Almqvist, H Malm, E Petrini, JY Andersson, PO Holtz & Håkan Pettersson, 2006, I: Applied Physics Letters. 88, 21, 213510.

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  26. Bias and temperature dependence of the escape processes in quantum dots-in-a-well infrared photodetectors

    L. Hoglund, P. O. Holtz, Håkan Pettersson, C. Asplund, Q. Wang, S. Almqvist, S. Smuk, E. Petrini & J. Y. Andersson, 2008, I: Applied Physics Letters. 93, 10, 103501.

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  27. Early stages of spinodal decomposition in Fe-Cr resolved by in-situ small-angle neutron scattering

    M. Hornqvist, M. Thuvander, Axel Steuwer, S. King, J. Odqvist & P. Hedstrom, 2015, I: Applied Physics Letters. 106, 6, 061911.

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  28. Photoelectrical response of hybrid graphene-PbS quantum dot devices

    Y. Q. Huang, R. J. Zhu, N. Kang, J. Du & Hongqi Xu, 2013, I: Applied Physics Letters. 103, 14, 143119.

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  29. Chemically fashioned ZnO nanowalls and their potential application for potentiometric cholesterol biosensor

    M. Q. Israr, J. R. Sadaf, O. Nur, M. Willander, Salah Salman & Bengt Danielsson, 2011, I: Applied Physics Letters. 98, 25, 253705.

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  30. ZnTe nanowires grown on GaAs(100) substrates by molecular beam epitaxy

    E. Janik, Janusz Sadowski, P. Dluzewski, S. Kret, L. T. Baczewski, A. Petroutchik, E. Lusakowska, J. Wrobel, W. Zaleszczyk, G. Karczewski, T. Wojtowicz & A. Presz, 2006, I: Applied Physics Letters. 89, 13

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  31. Enhancement of x-rays generated by a guided laser wakefield accelerator inside capillary tubes

    J. Ju, K. Svensson, A. Döpp, H. E. Ferrari, K. Cassou, O. Neveu, G. Genoud, F. Wojda, Matthias Burza, Anders Persson, Olle Lundh, Claes-Göran Wahlström & B. Cros, 2012, I: Applied Physics Letters. 100, 19, 191106.

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  32. Single-electron tunneling effects in a metallic double dot device

    T Junno, SB Carlsson, Hongqi Xu, Lars Samuelson, AO Orlov & GL Snider, 2002, I: Applied Physics Letters. 80, 4, s. 667-669

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  33. A RHEED and AFM study of the CBE growth of InAs and InP dots on (001) GaP

    B Junno, T Junno, M. S. Miller & Lars Samuelson, 1996, (Unpublished) I: Applied Physics Letters.

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  34. Defect-related photoluminescence and photoluminescence excitation as a method to study the excitonic bandgap of AlN epitaxial layers: Experimental and ab initio analysis

    Agata Kaminska, Kamil Koronski, Pawel Strak, Aleksandra Wierzbicka, Marta Sobanska, Kamil Klosek, Dmitrii V. Nechaev, Vladimir Pankratov, Kirill Chernenko, Stanislaw Krukowski & Zbigniew R. Zytkiewicz, 2020, I: Applied Physics Letters. 117, 23, 232101.

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  35. 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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  36. Designing pi-stacked molecular structures to control heat transport through molecular junctions

    Gediminas Kirsanskas, Qian Li, Karsten Flensberg, Gemma C. Solomon & Martin Leijnse, 2014, I: Applied Physics Letters. 105, 23, 233102.

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  37. Re-igniting the afterglow plasma column of an AC powered gliding arc discharge in atmospheric-pressure air

    Chengdong Kong, Jinlong Gao, Jiajian Zhu, Andreas Ehn, Marcus Aldén & Zhongshan Li, 2018 jun 25, I: Applied Physics Letters. 112, 26, 264101.

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  38. 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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  39. Positioning of nanometer-sized particles on flat surfaces by direct deposition from the gas phase

    Thomas J. Krinke, Heinz Fissan, Knut Deppert, Martin H. Magnusson & Lars Samuelson, 2001 jun 4, I: Applied Physics Letters. 78, 23, s. 3708-3710 3 s.

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  40. Defect-free InP nanowires grown in [001] direction on InP(001)

    U Krishnamachari, Magnus Borgström, Jonas Ohlsson, Nikolay Panev, Lars Samuelson, Werner Seifert, Magnus Larsson & Reine Wallenberg, 2004, I: Applied Physics Letters. 85, 11, s. 2077-2079

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  41. Thermopower as a tool to investigate many-body effects in quantum systems

    Liney Halla Kristinsdottir, Jakob Bengtsson, Heiner Linke, Stephanie Reimann & Andreas Wacker, 2014, I: Applied Physics Letters. 105, 8, 083105.

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  42. Determining Curie temperature of (Ga,Mn)As samples based on electrical transport measurements: Low Curie temperature case.

    Adam Kwiatkowski, Marta Gryglas-Borysiewicz, Piotr Juszynski, Jacek Przybytek, Maciej Sawicki, Janusz Sadowski, Dariusz Wasik & Michal Baj, 2016 jun 14, I: Applied Physics Letters. 108, 24, s. 1-4 4 s., 242103.

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  43. 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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  44. Ultrathin (1x2)-Sn layer on GaAs(100) and InAs(100) substrates: A catalyst for removal of amorphous surface oxides

    P. Laukkanen, M. P. J. Punkkinen, J. Lang, M. Tuominen, M. Kuzmin, V. Tuominen, J. Dahl, Johan Adell, Janusz Sadowski, J. Kanski, V. Polojarvi, J. Pakarinen, K. Kokko, M. Guina, M. Pessa & I. J. Vayrynen, 2011, I: Applied Physics Letters. 98, 23, 231908.

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  45. Quantum dot manipulation in a single-walled carbon nanotube using a carbon nanotube gate

    Dong Su Lee, Seung Joo Park, Sang Deok Park, Yung Woo Park, Marianna Kemell, Mikko Ritala, Johannes Svensson, Mats Jonson & Eleanor E.B. Campbell, 2006 dec 18, I: Applied Physics Letters. 89, 23, 233107.

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  46. Optical determination of Young's modulus of InAs nanowires

    Monica Lexholm, Ivan Karlsson, Fredrik Boxberg & Dan Hessman, 2009, I: Applied Physics Letters. 95, 11, 113103.

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  47. Suspended InAsnanowire gate-all-around field-effect transistors

    Qiang Li, Shaoyun Huang, Dong Pan, Jingyun Wang, Jianhua Zhao & Hongqi Xu, 2014, I: Applied Physics Letters. 105, 11, 113106.

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