Applied Physics Letters, 0003-6951

Tidskrift

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  1. 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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  2. Sharp exciton emission from single InAs quantum dots in GaAs nanowires

    Nikolay Panev, Ann Persson, Niklas Sköld & Lars Samuelson, 2003, I: Applied Physics Letters. 83, 11, s. 2238-2240

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  3. Self-consistent theory of the gain linewidth for quantum-cascade lasers

    F Banit, SC Lee, A Knorr & Andreas Wacker, 2005, I: Applied Physics Letters. 86, 4, s. 41108-1-41108-3

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  4. Room-temperature semiconductor heterostructure refrigeration

    Koung-An Chao, Magnus Larsson & AG Mal'shukov, 2005, I: Applied Physics Letters. 87, 2

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  5. Remnant magnetoresistance in ferromagnetic (Ga,Mn)As nanostructures

    T. Figielski, T. Wosinski, A. Morawski, A. Makosa, J. Wrobel & Janusz Sadowski, 2007, I: Applied Physics Letters. 90, 5

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  6. Relevance of intra- and inter-subband scattering on the absorption in heterostructures

    Camille Ndebeka-Bandou, Francesca Carosella, Robson Ferreira, Andreas Wacker & Gérald Bastard, 2012, I: Applied Physics Letters. 101, 19, 191104.

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  7. 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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  8. 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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  9. Reduction of off-state drain leakage in InGaAs-based metal-oxide-semiconductor field-effect transistors

    Jiongjiong Mo, Erik Lind, Guntrade Roll & Lars-Erik Wernersson, 2014, I: Applied Physics Letters. 105, 3, 033516.

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  10. Reduced annealing temperature for ferroelectric HZO on InAs with enhanced polarization

    Anton E.O. Persson, Robin Athle, Pontus Littow, Karl Magnus Persson, Johannes Svensson, Mattias Borg & Lars Erik Wernersson, 2020 feb 10, I: Applied Physics Letters. 116, 6, 062902.

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  11. Rectification of spin-bias-induced charge currents

    Feng Zhai, Xiaofang Zhao & Hongqi Xu, 2009, I: Applied Physics Letters. 94, 26, 262103.

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  12. Reconstruction of diffuse photon-density wave interference in turbid media from time-resolved transmittance measurements

    C Lindquist, A Pifferi, R Berg, Stefan Andersson-Engels & Sune Svanberg, 1996, I: Applied Physics Letters. 69, 12, s. 1674-1676

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  13. Radiation detector resolution over a continuous energy range

    Yanwen Zhang, Brian D. Milbrath, William J. Weber, Mikael Elfman & Harry J Whitlow, 2007, I: Applied Physics Letters. 91, 9

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  14. Radial tunnel diodes based on InP/InGaAs core-shell nanowires

    Ofogh Tizno, Bahram Ganjipour, Magnus Heurlin, Claes Thelander, Magnus T. Borgström & Lars Samuelson, 2017 mar 13, I: Applied Physics Letters. 110, 11, 113501.

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  15. 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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  16. Quantum dot photodegradation due to CdSe-ZnO charge transfer: Transient absorption study

    Karel Zidek, Kaibo Zheng, Pavel Chabera, Mohamed Qenawy & Tönu Pullerits, 2012, I: Applied Physics Letters. 100, 24

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  17. 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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  18. Quantum-dot-induced optical transition enhancement in InAs quantum-dot-embedded p-i-n GaAs solar cells

    X. -J. Shang, J. -F. He, M. -F. Li, F. Zhan, H. -Q. Ni, Z. -C. Niu, Hans Pettersson & Y. Fu, 2011, I: Applied Physics Letters. 99, 11, 113514.

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  19. Projecting picosecond lattice dynamics through x-ray topography

    Ola Synnergren, Michael Harbst, T Missalla, Jörgen Larsson, G Katona, R Neutze & R Wouts, 2002, I: Applied Physics Letters. 80, 20, s. 3727-3729

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  20. Precise in situ thickness analysis of epitaxial graphene layers on SiC(0001) using low-energy electron diffraction and angle resolved ultraviolet photoelectron spectroscopy

    C. Riedl, Alexei Zakharov & U. Starke, 2008, I: Applied Physics Letters. 93, 3, 033106.

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  21. Postgrowth annealing of (Ga,Mn) As under As capping: An alternative way to increase T-C

    Martin Adell, L Ilver, J Kanski, V Stanciu, P Svedlindh, J Sadowski, JZ Domagala, F Terki, C Hernandez & S Charar, 2005, I: Applied Physics Letters. 86, 11

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  22. 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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  23. Picosecond time-resolved x-ray refectivity of a laser-heated amorphous carbon film

    Ralf Nüske, Andrius Jurgilaitis, H. Enquist, S. Dastjani Farahani, J. Gaudin, L. Guerin, Maher Harb, C. von Korff, M. Stoermer, M. Wulff & Jörgen Larsson, 2011, I: Applied Physics Letters. 98, 10

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  24. 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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  25. Photoluminescence study of Zn-doped wurtzite InP core-shell nanowires

    Jesper Wallentin, Magnus Borgström, Lars Samuelson, Mitsuru Ekawa & Kenichi Kawaguchi, 2013, I: Applied Physics Letters. 102, 3, 032105.

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  26. Photoexcitation of excitons in self-assembled quantum dots

    H Pettersson, L Landin, R Liu, Werner Seifert, Mats-Erik Pistol & Lars Samuelson, 2004, I: Applied Physics Letters. 85, 21, s. 5046-5048

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  27. Photoemission study of the valence band offset between low temperature GaAs and (GaMn)As

    M. Adell, J. Adell, L. Ilver, J. Kanski & J. Sadowski, 2006, I: Applied Physics Letters. 89, 17, 172509.

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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. Photodoping of graphene/silicon van der Waals heterostructure observed by terahertz emission spectroscopy

    Wanyi Du, Zehan Yao, Lipeng Zhu, Yuanyuan Huang, Zhen Lei, Fugang Xi, Yanping Jin & Xinlong Xu, 2020 aug 24, I: Applied Physics Letters. 117, 8, 081106.

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  30. Phase-coherent transport and spin relaxation in InAs nanowires grown by molecule beam epitaxy

    L. B. Wang, J. K. Guo, N. Kang, Dong Pan, Sen Li, Dingxun Fan, Jianhua Zhao & Hongqi Xu, 2015, I: Applied Physics Letters. 106, 17, 173105.

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  31. Oxidized crystalline (3 x 1)-O surface phases of InAs and InSb studied by high-resolution photoelectron spectroscopy

    M. Tuominen, J. Lang, J. Dahl, M. Kuzmin, M. Yasir, J. Makela, Jacek Osiecki, Karina Schulte, M. P. J. Punkkinen, P. Laukkanen & K. Kokko, 2015, I: Applied Physics Letters. 106, 1, 011606.

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  32. Oxidation and reduction behavior of Ge/Si islands

    T Sass, Vilma Zela, Anders Gustafsson, I Pietzonka & Werner Seifert, 2002, I: Applied Physics Letters. 81, 18, s. 3455-3457

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  33. 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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  34. Optical properties and morphology of InAs/InP (113)B surface quantum dots

    A Nakkar, H Folliot, A Le Corre, F Dore, I Alghoraibi, C Labbe, G Elias, S Loualiche, Mats-Erik Pistol, Philippe Caroff & Carl Ellström, 2008, I: Applied Physics Letters. 92, 23, s. 231911-3 pp

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  35. 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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  36. 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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  37. Optical and electronic properties of thermoelectric Zn4 Sb3 across the low-temperature phase transitions

    A. P. Litvinchuk, B. Lorenz, Feng Chen, J. Nyĺn, U. Häussermann, Sven Lidin, Limin Wang & Arnold M. Guloy, 2007 maj 10, I: Applied Physics Letters. 90, 18, 181920.

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  38. 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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  39. One-dimensional heterostructures in semiconductor nanowhiskers

    Mikael Björk, Jonas Ohlsson, T Sass, Ann Persson, Claes Thelander, Martin Magnusson, Knut Deppert, Reine Wallenberg & Lars Samuelson, 2002, I: Applied Physics Letters. 80, 6, s. 1058-1060

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  40. Off-axis reflection zone plate for quantitative soft x-ray source characterization

    T Wilhein, D Hambach, B Niemann, M Berglund, Lars Rymell & H. M Hertz, 1997, I: Applied Physics Letters. 71, 2, s. 190-192

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  41. Nonlinear response of quantum cascade structures

    David Winge, Martin Franckie & Andreas Wacker, 2012, I: Applied Physics Letters. 101, 21, 211113.

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  42. Nonlinear electrical properties of three-terminal junctions

    Daniel Wallin, Ivan Shorubalko, Hongqi Xu & A Cappy, 2006, I: Applied Physics Letters. 89, 9, 092124.

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  43. Nonlinear electrical properties of Si three-terminal junction devices

    Fantao Meng, Jie Sun, Mariusz Graczyk, Kailiang Zhang, Mika Prunnila, Jouni Ahopelto, Peixiong Shi, Jinkui Chu, Ivan Maximov & Hongqi Xu, 2010, I: Applied Physics Letters. 97, 24, 242106.

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  44. Near-surface silica does not increase radiative heat dissipation from plant leaves

    Lars Olof Björn & Shaoshan Li, 2011, I: Applied Physics Letters. 99, 2, 024104.

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  45. Nanowire resonant tunneling diodes

    Mikael Björk, Jonas Ohlsson, Claes Thelander, Ann Persson, Knut Deppert, Reine Wallenberg & Lars Samuelson, 2002, I: Applied Physics Letters. 81, 23, s. 4458-4460

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  46. Nanowire-based multiple quantum dot memory

    Henrik Nilsson, Claes Thelander, Linus Fröberg, Jakob Wagner & Lars Samuelson, 2006, I: Applied Physics Letters. 89, 16, 163101.

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  47. Nanoscale tungsten aerosol particles embedded in GaAs

    I Aberg, Knut Deppert, Martin Magnusson, I Pietzonka, Werner Seifert, Lars-Erik Wernersson & Lars Samuelson, 2002, I: Applied Physics Letters. 80, 16, s. 2976-2978

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  48. Nanometer-scale two-terminal semiconductor memory operating at room temperature

    Aimin Song, M Missous, Pär Omling, Ivan Maximov, Werner Seifert & Lars Samuelson, 2005, I: Applied Physics Letters. 86, 4, 042106.

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