Nano Electronic Materials Research Group

July 16, 2007

 
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Publications List

        Selected List (for full publications list, click here)

• "Coherently driven non-classical light emission from a quantum dot", A. Muller, E. B. Flagg, P. Bianucci, D. G. Deppe, W. Ma, J. Zhang, G. J. Salamo, and C. K. Shih, to be submitted


• "Resonance fluorescence from a coherently driven semiconductor quantum dot in a cavity", A. Muller, E. B. Flagg, P. Bianucci, X. Y. Wang, D. G. Deppe, W. Ma, J. Zhang, G. J. Salamo, M. Xiao, and C. K. Shih, arXiv:0707.0656


"Polarization conversion in a silica microsphere", P. Bianucci, C. R. Fietz, J. W. Robertson, G. Shvets and C. K. Shih, Optics Express 15, 6999 (2007), [link], arXiv:0704.0422.


• "Whispering gallery resonators as polarization converters", P. Bianucci, C. R. Fietz, J. W. Robertson, G. Shvets and C. K. Shih, to appear in Optics Lett.

• "Self-Aligned All-Epitaxial Microcavity for Cavity QED with Quantum Dots", A. Muller, D. Lu, J. Ahn, D. Gazula, S. Quadery, S. Freisem, D.G. Deppe and C.K. Shih, Nano Lett. 6, 2920 (2006). [link] See also Nature Photonics Research Highlight, Nature Photonics 1, 79 (2007). [link]

• "High Q (33,000) All-Epitaxial Microcavity for Quantum Dot Vertical-Cavity Surface-Emitting Lasers and Quantum Light Sources", A. Muller, C. K. Shih, J. Ahn, D. Lu, D. Gazula, and D. G. Deppe, Appl. Phys. Lett. 88, 031107 (2006). [link]

• "Isolated single quantum dot emitters in all-epitaxial micro-cavities", A. Muller, C. K. Shih, J. Ahn, D. Lu, and D. G. Deppe, Optics Lett. 31, 528 (2006). [link]

• "Coherent control of a V-type three-level system in a single quantum dot", Q. Q. Wang, A. Muller, M. T. Cheng, H. J. Zhou, P. Bianucci, and C. K. Shih, Phys. Rev. Lett. 95, 187404 (2005). [link]


• “Probing the step structure of buried metal/semiconductor interfaces using quantized electron states: The case of Pb on Si(111) 6x6-Au,” Yu HB, Jiang CS, Ebert P, Shih CK, Appl. Phys. Lett.  81, 2005 (2002). [link]


• “Interplay of Rabi oscillations and quantum interference in semiconductor quantum dots,” H. Htoon, T. Takagahara, D. Kulik, O. Baklenov, A.L. Holmes Jr., and C.K. Shih, Phys. Rev. Lett. 88, 087401 (2002). [link]


• “Quantitative Determination of the Metastability of Flat Ag Overlayers on GaAs(110),” Hongbin Yu, C. S. Jiang, Ph. Ebert, X. D. Wang, J. M. White, Qian Niu, Zhenyu Zhang, and C. K. Shih, Phys. Rev. Lett. 88, 016102 (2002). [link]


• “Quantum Decoherence of Excited States in Self Assembled Quantum Dots,” H. Htoon, D. Kulik, O. Baklenov, A. L. Holmes, Jr, T. Takagahara and C. K. Shih, Phys. Rev. B. 63, 241303(R), (2001). [link]


• “Scanning probe-based Frequency-dependent Microrheology of Polymer Gels and Biological Cells,” R.E. Mahaffy, C.K. Shih, F.C. MacKintosh, and J. Kas, Phys. Rev. Lett. 85, 880, (2000). [link]


• “Cross-sectional Nano-photoluminescence Studies of Stark Effects in Self-Assembled Quantum Dots,” H. Htoon, O. Baklenov, A. L. Holmes, J. Keto, and C. K. Shih, Appl. Phys. Lett. 76, 700 (2000). [link]


• “Non-uniform composition in InGaAs alloy quantum dots,” N. Liu, J. Tersoff, O. Baklenov, A.L.Holmes Jr., and C.K. Shih, Phys. Rev. Lett. 84, 334 (2000). [link]


• “Dislocations, phason defects, and domain walls in a one-dimensional quasiperiodic superstructure of a metallic thin film,” Ph. Ebert, K.-J. Chao, Q. Niu, and C.K. Shih, Phys. Rev. Lett. 83, 3222 (1999). [link]


• “Quantum dots at the nanometer scale: Interdot carrier shuffling and multiparticle states,” H. Htoon, Hongbin Yu, D. Kulik, J. W. Keto, O. Baklenov, A. L. Holmes, Jr., B. G. Streetman, and C. K. Shih, Phys. Rev. B 60, 11026 (1999). [link]


• “‘Electronic growth’ of metallic overlayers on semiconductor substrates,” Z. Zhang, Q. Niu, and C.K. Shih, Phys. Rev. Lett.. 80, 5381 (1998). [link]


• “Determination of 2D pair correlations and pair interaction energies of In atoms in molecular beam epitaxially grown InGaAs alloys,” K.-J. Chao, C.K. Shih, D.W. Gotthold, B.G. Streetman, Phys. Rev. Lett. 79, 4822 (1997). [link]


“Formation of atomically flat silver film on GaAs with a 'silver-mean' quasiperiodicity,” A.R. Smith, K.-J. Chao, Q. Niu, and C.K. Shih, Science. 273, 226 (1996). [link]

 

 

 

   

Nano Electronic Material Research Group

The University of Texas at Austin