Publications
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“Functional-State Dependence Of Picosecond Protein Dynamics”. J. Phys. Chem. B 125, no. 40 (2021): 11134-11140. doi:10.1021/acs.jpcb.1c05018.
. “The 2017 Terahertz Science And Technology Roadmap”. Journal Of Physics D-Applied Physics 50 (2017): 49. doi:https://doi.org/10.1088/1361-6463/50/4/043001.
. “The 2017 Terahertz Science And Technology Roadmap”. Journal Of Physics D-Applied Physics 50 (2017): 49. doi:https://doi.org/10.1088/1361-6463/50/4/043001.
. “The 2017 Terahertz Science And Technology Roadmap”. Journal Of Physics D-Applied Physics 50 (2017): 49. doi:https://doi.org/10.1088/1361-6463/50/4/043001.
. “Photoactive Yellow Protein Terahertz Response: Hydration, Heating And Intermediate States”. Ieee Transactions On Terahertz Science And Technology 3 (2013): 288-294. doi:https://doi.org/10.1109/TTHZ.2013.2256233.
. “Photoactive Yellow Protein Terahertz Response: Hydration, Heating And Intermediate States”. Ieee Transactions On Terahertz Science And Technology 3 (2013): 288-294. doi:https://doi.org/10.1109/TTHZ.2013.2256233.
. “Functional State Dependence Of Picosecond Protein Dynamics”. Arxiv:1105.4425 (2012). http://arxiv.org/0054394.
. “Evidence Of Protein Collective Motions On The Picosecond Timescale”. Biophysical Journal 100 (2011): 1058-1065. doi:https://dx.doi.org/10.1016%2Fj.bpj.2010.12.3731.
. “Why Is Thz Sensitive To Protein Functional States? Oxidation State Of Cytochrome C”. Terahertz Science And Technology 3, no. 4 (2010). doi:10.11906/TST.149-162.2010.12.15.
. “The Role Of The Protein Surface On The Local Biological Water Dynamics”. Biosensing Ii. Bellingham: Spie-Int Soc Optical Engineering, 2009. doi:https://doi.org/10.1117/12.828697.
. “The Role Of Structure In The Protein Dynamical Transition”. 2008 33Rd International Conference On Infrared, Millimeter And Terahertz Waves. IEEE, 2008. doi:https://doi.org/10.1109/ICIMW.2008.4665800.
. “Development Of Tagless Biosensors For Detecting The Presence Of Pathogens”. In Terahertz Frequency Detection And Identification Of Materials And Objects, ed X.-C. Zhang, R. E. Miles, H. Eisele and A. Krotkus:123-134. Dordrecht, The Netherlands: Springer, 2007.
. “Protein Dynamical Transition In Terahertz Dielectric Response”. Chemical Physics Letters 442, no. 4 (2007): 413 - 417. doi:10.1016/j.cplett.2007.05.080.
. “Terahertz Dielectric Assay Of Solution Phase Protein Binding”. Applied Physics Letters 90 (2007): 3. doi:10.1063/1.2748852.
. “Terahertz Measurements Of Protein Relaxational Dynamics”. Proceedings Of The Ieee 95 (2007): 1605-1610. doi:10.1109/JPROC.2007.898906.
. “Protein Conformational Dynamics Measured With Terahertz Time Domain Spectroscopy”. 2006 Joint 31St International Conference On Infrared Millimeter Waves And 14Th International Conference On Teraherz Electronics. IEEE, 2006. doi:https://doi.org/10.1088/0031-9155/47/21/318.
. “Using Terahertz Spectroscopy As A Protein Binding Assay”. Advanced Biomedical And Clinical Diagnostic Systems Iv;. San Jose, California, United States, 2006. doi:10.1117/12.664098.
. “Terahertz Measurements Of The Photoactive Protein Bacteriorhodopsin Mutant D96N: M And P States”. Mater. Res. Soc. Symp. Warrendale, PA, 2004. doi:10.1557/PROC-826-V2.6.
. “Protein Flexibility And Conformational State: A Comparison Of Collective Vibrational Modes Of Wild-Type And D96N Bacteriorhodopsin”. Biophysical Journal 85 (2003): 1269-1277. doi:10.1016/S0006-3495(03)74562-7.
. “Ultrafast Thz Spectroscopy Of Photoactive Biomolecules”. Ultrafast Phenomena In Semiconductors Vii. San Jose, California, 2003.
. “Thz Time Domain Spectroscopy Of Biomolecular Conformational Modes”. Physics In Medicine & Biology 47 (2002): 3797. doi:https://doi.org/10.1088/0031-9155/47/21/318.
. “Terahertz Time Domain Spectroscopy Of The M Intermediate State Of Bacteriorhodopsin”. Proceedings Of The 26Th International Conference On Infrared And Millimeter Waves. Toulouse, France, 2001.
. “Pulsed Terahertz Spectroscopy Of Dna, Bovine Serum Albumin And Collagen Between 0.1 And 2.0 Thz”. Chemical Physics Letters 320 (2000): 42-48. doi:10.1016/S0009-2614(00)00227-X.
. “Temperature-Dependent Terahertz Output From Semi-Insulating Gaas Photoconductive Switches”. Applied Physics Letters 72 (1998): 2229-2231. doi:10.1063/1.121329.
. “Undressing A Collective Intersubband Excitation In A Quantum Well”. Physical Review Letters 76 (1996): 2382-2385. doi:10.1103/PhysRevLett.76.2382.
. “Undressing A Collective Intersubband Excitation In A Quantum Well”. Physical Review Letters 76 (1996): 2382-2385. doi:10.1103/PhysRevLett.76.2382.
. “Nonlinear Quantum Dynamics In Semiconductor Quantum-Wells”. Physica D-Nonlinear Phenomena 83 (1995): 229-242. doi:10.1016/0167-2789(94)00266-S.
. “Nonlinear Quantum Dynamics In Semiconductor Quantum-Wells”. Physica D-Nonlinear Phenomena 83 (1995): 229-242. doi:10.1016/0167-2789(94)00266-S.
. “Resonant-Energy Relaxation Of Terahertz-Driven 2-Dimensional Electron Gases”. Physical Review B 51 (1995): 18041-18044. doi:10.1103/PhysRevB.51.18041.
. “Terahertz Grid Frequency Doublers”. Proc. Sixth Intl. Symp. Space Terahertz Tech. Citeseer, 1995. https://www.nrao.edu/meetings/isstt/papers/1995/1995199206.pdf.
. “Dc Transport In Intense, Inplane Terahertz Electric-Fields In Al(X)Ga(1-X)As Heterostructures At 300-K”. Solid-State Electronics 37 (1994): 693-695. doi:10.1016/0038-1101(94)90278-X.
. “Energy Relaxation At Thz Frequencies In Alxga1-Xas Heterostructures”. Semiconductor Science And Technology 9 (1994): 828-830. doi:10.1088/0268-1242/9/5S/116.
. “Far-Infrared Harmonic Generation From Semiconductor Heterostructures”. Spie Proceedings, 1994.
. “Far-Infrared Saturation Spectroscopy Of A Single Square-Well”. Semiconductor Science And Technology 9 (1994): 627-629. doi:10.1088/0268-1242/9/5S/061.
. “Far-Infrared Saturation Spectroscopy Of A Single Square-Well”. Semiconductor Science And Technology 9 (1994): 627-629. doi:10.1088/0268-1242/9/5S/061.
. “Probing Terahertz Dynamics In Semiconductor Nanostructures With Ucsb Free-Electron Lasers”. Journal Of Luminescence 60-1 (1994): 250-255. doi:10.1016/0022-2313(94)90142-2.
. “Probing Terahertz Dynamics In Semiconductor Nanostructures With Ucsb Free-Electron Lasers”. Journal Of Luminescence 60-1 (1994): 250-255. doi:10.1016/0022-2313(94)90142-2.
. “Far-Infrared Nonlinear Response Of Electrons In Semiconductor Nanostructures”. Spie Proceedings, 1993.
. “Site-Selective Oxygen-Isotope Substitution In Yba2Cu3O7−Δ”. Physical Review B 44 (1991). doi:10.1103/PhysRevB.44.9556.
. “Site-Selective Oxygen-Isotope Substitution In Yba2Cu3O7−Δ”. Physical Review B 44 (1991). doi:10.1103/PhysRevB.44.9556.
. “8 New High-Temperature Superconductors With The 1-2-4 Structure”. Physical Review B 39 (1989): 7347-7350. doi:10.1103/physrevb.39.7347 .
. “8 New High-Temperature Superconductors With The 1-2-4 Structure”. Physical Review B 39 (1989): 7347-7350. doi:10.1103/physrevb.39.7347 .
. “8 New High-Temperature Superconductors With The 1-2-4 Structure”. Physical Review B 39 (1989): 7347-7350. doi:10.1103/physrevb.39.7347 .
. “Oxygen Concentration Effect On Tc Of The Bi-Ca-Sr-Cu-O Superconductor”. Physical Review B 39 (1989): 6612-6614. doi:https://doi.org/10.1103/physrevb.39.6612 .
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