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Search for author: Y. Fu

Found: 70 entries.

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1. Blinking, Flickering, and Correlation in Fluorescence of Single Colloidal CdSe Quantum Dots with Different Shells under Different Excitations
L. Li, G. J. Tian, Y. Luo, H. Brismar and Y. Fu
J. Phys. Chem. C, 117 (2013) 4844
 

2. Comb-shaped photonic crystal structure for efficient broadband light diffraction and funnelling in solar cells
Z.-H. Chen, S. Hellström, Z.-Y. Yu and Y. Fu
Sol. Energy Mater. Sol. Cells 99, 316-320 (2012).
 

3. Observation of Bunched Blinking from Individual CdSe/CdS and CdSe/ZnS Colloidal Quantum Dots
H. Qin, X.J. Shang, Z. Ning, T. Fu, Z. Niu, H. Brismar, H. Ågren and Y. Fu
J. Phys. Chem. C 116, 12786 (2012)
 

4. Time-resolved photocurrents in quantum well/dot infrared photodetectors with different optical coupling structures
Z.-H. Chen, S. Hellström, Z.-Y. Yu, M. Qiu and Y. Fu
Appl. Phys. Lett. 100, 043502 (2012)
 

5. Type-II colloidal quantum dots sensitized solar cells with a thiourea based organic redox couple
Z. Ning, C. Yuan, H. Tian, Y. Fu, L. Li, L. Sun and H. Ågren
J. Mater. Chem. 22, 6032 (2012)
 

6. Effect of built-in electric field in photovoltaic InAs quantum dot embedded GaAs solar cell
X.-J. Shang, J.-F. He, H.-L. Wang, M.-F. Li, Y. Zhu, Z.-C. Niu and Y. Fu
Appl. Phys. A, 103, 335-341 (2011) DOI: 10.1007/s00339-010-6152-8

7. Exciton Polariton Contribution to the Stokes Shift in Colloidal Quantum Dots
Z.-H. Chen, S. Hellström, Z.-J. Ning, Z.-Y. Yu and Y. Fu
J. Phys. Chem. C 115, 5286-5293 (2011).
 

8. Multiple beam splitting to free space from a V groove in a photonic crystal waveguide
Z.-H. Chen, Z.-Y. Yu, Y.-M. Liu, P.-F. Lu and Y. Fu
Appl. Phys. B: Lasers and Optics 102, 857-861 (2011)
 

9. Pure Organic Redox Couple for Quantum-Dot-Sensitized Solar Cells
Z. Ning, H. Tian, C. Yuan, Y. Fu, L. Sun and H. Ågren
Chemistry - A European Journal, 17 (2011) 6330-6333 DOI: 10.1002/chem.201003527

10. 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, H. Pettersson and Y. Fu
Appl. Phys. Lett., 99, 113514-3 (2011) DOI: 10.1063/1.3638488

11. Role of surface ligands in optical properties of colloidal CdSe/CdS quantum dots
Z. Ning, M. Molnár, Y. Chen, P. Friberg, L. Gan, H. Ågren and Y. Fu
Phys. Chem. Chem. Phys., 13 (2011) 5848-5854 DOI: 10.1039/C0CP02688C

12. Solar cells sensitized with type-II ZnSe-CdS core/shell colloidal quantum dots
Z. Ning, H. Tian, C. Yuan, Y. Fu, H. Qin, L. Sun and H. Ågren
Chem. Comm 47, 1536-8 (2011) DOI: 10.1039/C0CC03401K

13. Dynamic optical response of an excitonic quantum dot studied by solving the self-consistent Maxwell-Schrödinger equations nonperturbatively
S. Hellström and Y. Fu
Phys. Rev. B. 82, 245305 (2010) DOI: 10.1103/PhysRevB.82.245305

14. Effects of quantum dot labeling on endothelial progenitor cell function and viability
Matyas Molnar, Peter Friberg, Y. Fu, Mikeal Brisslert, Michael Adams and Yun Chen
CELL MEDICINE: Part B of Cell Transplantation (2010)
 

15. Impact ionization and Auger recombination rates in semiconductor quantum dots
Y. Fu, Y.-H. Zhou, H.B. Su, F. Y. C. Boey and H. Ågren
J. Phys. Chem. C, vol.114, p.3743-7, 2010. DOI: 10.1021/jp9082486

16. Increased photocurrent in quantum dot infrared photodetector by subwavelength hole array in metal thin film
S. Hellström, Z.-H. Chen, Y. Fu, M. Qiu, R. Soltanmoradi, Q. Wang and J. Y. Andersson
Appl. Phys. Lett. 96, 231110 (2010) DOI: 10.1063/1.3449117

17. Nonlinear optical properties of quantum dot nano-composite materials studied by solid-state theory calculations
Y. Fu and H. Ågren
Book chapter in "Vademecum of Computational Chemistrty", Editor-in-Chief J. Leszczynski, World Scientific (2010)
 

18. Optical characterization of colloidal CdSe quantum dots in endothelial progenitor cells
M. Moln\'ar, Y. Fu, P. Friberg and Y. Chen
J. Nanobiotech., 8:2, 2010. DOI: 10.1186/1477-3155-8-2

19. Wave function engineering of CdSe-CdS core-shell quantum dots for enhanced electron transfer to a TiO2 substrate
Z. Ning, H. Tian, H. Qin, Q. Zhang, H. Ågren, L. Sun and Y. Fu
J. Phys. Chem. C 114, 15184-9 (2010) DOI: 10.1021/jp102978g

20. Ab initio study of energy band structures of GaAs nano clusters
J. Jiang, B. Gao, T.-T. Han and Y. Fu
Appl. Phys. Lett. 94 (2009) 092110
 

21. Binary metal and semiconductor quantum dot metamaterials with negative optical dielectric constant and compensated loss for small volume waveguides, modulators and switches
E. Ponizovskaya, L. Thylen, A. Bratkovsky and Y. Fu
Appl. Phys. A, vol.95, p.1029-32, 2009
 

22. Nonlinear Optical Properties of Quantum Dots - Excitons in Nanostructures
Y. Fu, S. Hellström and H. Ågren
J Nonlinear Optical Physics & Materials, vol.18, p.195-226, 2009.
 

23. Photonic energy band structure of excitonic quantum dot dimer system
Y. Fu
J. Appl. Phys. vol.106, p.054302(5), 2009.
 

24. Radiative and nonradiative recombination of photoexcited excitons in multi-shell-coated CdSe/CdS/ZnS quantum dots
Y. Fu, H. Ågren, J. M. Kowalewski, H. Brismar, J. Wu, Y. Yue, N. Dai and L. Thylén
EuroPhysics Letters, 86, 37003(6) (2009)
 

25. Strain effect in determining the geometric shape of self-assembled quantum dot
X.-F. Yang, K. Fu, W. Lu, W.-L. Xu and Y. Fu
J. Phys. D: Appl. Phys. vol.42, p.125414(8), 2009.
 

26. Strain-induced Stranski-Krastanov three-dimensional growth mode of GaSb quantum dot on GaAs substrate
K. Fu and Y. Fu
Applied Physics Letters, vol. 94, p. 181913 (2009) DOI: 10.1063/1.3132054

27. A lossless negative dielectric constant from quantum dot exciton polariton
Y. Fu, L. Thylén and H. Ågren
Nano Letters, vol.8, p.1551-5, 2008.
 

28. A metal-wire/quantum-dot composite metamaterial with negative ε and compensated optical loss
A. Bratkovsky, E. Ponizovskaya, S.-Y. Wang, P. Holmström, L. Thylén, Y. Fu and H. Ågren
Appl. Phys. Lett. vol.93, p.193106(3), 2008
 

29. Carrier wave-packet transport under the influence of charged quantum dot in small-area resonant tunneling diode
Y. Hou, W.-P. Wang, N. Li, W.-L. Xu, W. Lu and Y. Fu
Appl. Phys. Lett. vol.93, p.132108, 2008
 

30. Dynamic photon emission from multiphoton-excited semiconductor quantum dots
T.-T. Han, Y. Fu and H. Ågren
J. Appl. Phys, vol.103, p.93703(6), 2008.
 

31. Effects of series and parallel resistances on the current-voltage characteristics of small-area air-bridge resonant tunneling diode
Y. Hou, W.-P. Wang, N. Li, W. Lu and Y. Fu
J. Appl. Phys. vol.104, p.074508(5), 2008
 

32. Effects of shape and strain distribution of quantum dots on optical transition in the quantum dot infrared photodetectors
X.-F. Yang, X.-S. Chen, W. Lu and Y. Fu
Nanoscale Res. Lett. vol.3, p.534-9, 2008.
 

33. Finite-difference time-domain simulations of exciton-polariton resonances in quantum-dot arrays
Y. Zeng, Y. Fu, M. Bengtsson, X. Chen, W. Lu and H. Ågren
Optics Express, vol.16, p.4507-19, 2008
 

34. First-principles LDA+U studies of the In-doped ZnO transparent conductive oxide
X. H. Zhou, Q.-H. Hu and Y. Fu
J. Appl. Phys. vol.104, p.063703(6), 2008.
 

35. Kinetic Monte Carlo study of metal organic chemical vapor deposition growth dynamics of GaN thin film at microscopic level
K. Fu, Y. Fu, P. Han, Y. Zhang and R. Zhang
Journal of Applied Physics, vol. 103, p.103524(7), 2008 DOI: 10.1063/1.2927389

36. Kinetic Monte Carlo study of metal organic chemical vapor deposition growth mechanism of GaSb quantum dots
K. Fu and Y. Fu
Appl. Phys. Lett. vol. 93, p.101906, 2008 DOI: 10.1063/1.2981515
Attached: Document.txt

37. Optical properties of multicoated CdSe/CdS/ZnS quantum dots for multiphoton applications
T.-T. Han, Y. Fu, J. Wu, Y. Yue and N. Dai
J. Phys. D: Appl. Phys. vol.41, p.115104(5), 2008
 

38. Optical reflection from excitonic quantum-dot multilayer structures
Y. Fu, H. Ågren, L. Höglund, J. Y. Andersson, C. Asplund, M. Qiu and L. Thylen
Appl. Phys. Lett. vol.93, p.183117(3), 2008
 

39. Dark currents of GaAs/AlGaAs quantum-well infrared photodetectors
N. Li, D.-Y. Xiong, X.-F. Yang, W. Lu, W.-L. Xu, C.-L. Yang, Y. Hou and Y. Fu
Appl. Phys. A, vol.89, p.701-5, 2007
 

40. Design of semiconductor CdSe-core ZnS/CdS-multishell quantum dots for multiphoton applications
Y. Fu, T.-T. Han, H. Ågren, L. Lin, P. Chen, Y. Liu, G.-Q. Tang, J. Wu, Y. Yue and N. Dai
Appl. Phys. Lett. vol.90, p.173102(3), 2007.
 

41. Dynamics of the damping oscillator formed by the collective generation of surface polaritons for extraordinary light transmission through subwavelength hole arrays in thin metal films
Y. Zeng, Y. Fu, X. Chen, W. Lu and H. Ågren
Phys. Rev. B, vol.76, p.125409, 2007
 

42. Highly efficient generation of entangled photon pair by spontaneous parametric down-conversion in defective photonic crystal
Y. Zeng, Y. Fu, X. Chen, W. Lu and H. Ågren
J. Opt. Soc. Am. B, vol.24, p.1365, 2007
 

43. Photoconduction characteristics of a C/CNx multiwalled nanotube junction
K. Xiao, Y. Fu, Y.Q. Liu, G. Yu, J. Zhai, L. Jiang, W. Hu, Z. Shuai, Y. Luo and D. Zhu
Adv. Funct. Mater. 17 (2007) 2842
 

44. Radiative emission from multiphoton-excited semiconductor quantum dots
T.-T. Han, Y. Fu and H. Ågren
J. App. Phys. vol.101, p.063712(6), 2007.
 

45. Room-temperature photoluminescence of doped 4H-SiC film grown on AlN/Si(100)
T.-T. Han, Y. Fu, H. Ågren, P. Han, Z. Qin and R. Zhang
Appl. Phys. A, vol.86, p.145-9, 2007.
 

46. Selective excitation of surface polariton Bloch waves for efficient transmission of light through a metal-thin-film sub-wavelength hole array
Y. Zeng, Y. Fu, X. Chen, W. Lu and H. Ågren
Phys. Rev. B, vol.76, p.035427, 2007
 

47. Structural analysis of dilute-nitride zincblende InxGa1-xNyAs1-y cluster by a semi-empirical quantum chemistry study
T-T Han, Y. Fu, S.-M. Wang and A. Larsson
J. Appl. Phys. vol.101, p.123707(6), 2007
 

48. Surface-plasmon-assisted electromagnetic field enhancement in semiconductor quantum dots
Y. Fu, Y. Zeng and H. Ågren
Appl. Phys. A, vol.87, p.167-9, 2007.
 

49. A rapid technique using handheld instrument for mapping corrosion of steel in reinforced concrete
L. Tang and Y. Fu
Restoration of Buildings and Monuments, vol.12, p.387-400, 2006.
 

50. Chapter 5 Quantum Effects and Nanofabrications in Scaling Metal-Oxide-Semiconductor Devices, in Handbook of Semiconductor, Edited by A. A. Balandin and K. L. Wang
Y. Fu, M. Willander and Q.-X. Xu
American Scientific Publishers, 2006. vol.5. p.229–56.
 

51. Complete band gaps in three-dimensional quantum-dot photonic crystals
Y. Zeng, Y. Fu, X. Chen, W. Lu and H. Ågren
Phys. Rev. B, vol.74, p.115325, 2006.
 

52. Dynamic analysis of multiple-photon optical processes in semiconductor quantum dots
Y. Fu, T.-T. Han, Y. Luo and H. Ågren
J. Phys.: Condens. Matter, vol.18, p.9071-9082, 2006.
 

53. Effective dielectric constant of two-dimensional photonic crystals in optical bands
Y. Zeng, Y. Fu, X. Chen and W. Lu
Solid State Communications, vol.138, p.205, 2006.
 

54. Electron wave packet transmission through a Si quantum wire under the influence of an ionized impurity scattering potential
Y. Fu and O. Engström
Journal of Nanoelectronics and Optoelectronics, vol.1, p.108-13, 2006
 

55. Energy band structure and spectral gain characteristics of dilute-nitride zincblende InGaNAs quantum wells embedded in GaAs and GaNAs barriers
Y. Fu, Y.-Q. Wei, X.-D. Wang, M. Sadeghi, S.-M. Wang and A. Larsson
J. Appl. Phys. vol.100, p.073105(6), 2006.
 

56. Exciton polaritons of nano-spherical-particle photonic crystals in compound lattices
Y. Zeng, X.S. Chen, W. Lu and Y. Fu
Euro. Phys. J. B, vol.49, p.313, 2006.
 

57. Extended plane-wave-based transfer-matrix approach to simulating dispersive photonic crystals
Y. Zeng, Y. Fu, X. Chen, W. Lu and H. Ågren
Solid State Communications, vol.139, p.328, 2006 .
 

58. Modification of absorption spectrum of GaAs/AlGaAs quantum well infrared photodetector by postgrowth adjustment
Y. Fu and C. L. Yang
J. Infrared Millimeter Waves, vol.25, p.1-5, 2006
 

59. Multi-photon excitation of quantum dots by ultra-short and ultra-intense laser pulses
Y. Fu, T.-T. Han, Y. Luo and H. Ågren
Appl. Phys. Lett. vol.88, p.221114(3), 2006
 

60. Multiple-photon spectrum of CdS semiconductor quantum dots for bioimaging
Y. Fu, Y. Luo and H. Ågren
Thin Solid Films, vol.515, p.842-5, 2006.
 

61. Nanoscale excitonic-plasmonic optical waveguiding by metal-coated quantum dots
Y. Fu, Y. Zeng, E. Berglind, L. Thylén and H. Ågren
Proceedings of International Symposium on Biophotonics, Nanophotonics and Metamaterials, 2006. p.426-31.
 

62. Non-perturbative dynamic photon absorption of quantum wells
Y. Fu, W. Lu, J. Jiang, M. K. Wang, X. P. Yang, G. Wu, Y. H. Fan and Y. G. Li
J. Appl. Phys. vol.99, p.103104(7), 2006
 

63. Optical properties of two-dimensional negative-phase-velocity-medium photonic crystals
Y. Zeng, Y. Fu, X. S. Chen, W. Lu and H. Ågren
Phys. Rev. E, vol.73, p.066625, 2006.
 

64. Optical transmission and waveguiding by excitonic quantum dot lattices
Y. Fu, E. Berglind, L. Thylėn and H. Ågren
Journal of the Optical Society of America [JOSA B], vol.23, p.2441-7, 2006.
 

65. Emission rates for electron tunneling from InAs quantum dots to GaAs substrate
Y. Fu, O. Engström and Y. Luo
J. Appl. Phys. 96, 6477 (2004)
 

66. Two-photon-absorption-induced nonlinear photoresponse in GaAs/AlGaAs quantum-well infrared photodetectors
J. Jiang, Y. Fu, N. Li, X.S. Chen, H.L. Zhen, W. Lu, M.K. Wang, X.P. Yang, G. Wu, Y.H. Fan and Y. G. Li
Appl. Phys. Lett. 85 (16): 3614-3616 OCT 18 2004
 

67. Electronic transport properties of single molecular junctions based on five-membered heteraromatic molecules
Y. Luo, C.-K. Wang and Y. Fu
Chem. Phys. Lett., 369, 299, (2003)
 

68. Effects of chemical and physical modifications on the electronic transport properties of molecular junctions
Y. Luo, C.-K. Wang and Y. Fu
J. Chem. Phys., 117, 10283 (2002)
 

69. First-principle studies of I-V properties of a molecular wire
C.-K. Wang, H.-H. Li, Y.D. Li, Y. Luo and Y. Fu
Science in China A, 32 (2002) 704
 

70. A quantum chemistry approach for current-voltage characterization of molecular junctions
C.-K. Wang, Y. Fu and Y. Luo
Phys. Chem. Chem. Phys.,3 (2001)5017
 

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