M.-Y. Ng and W.-C. Liu, Fluorescence enhancements of fiber-optic sensor with metallic nanoparticles, Opt. Express 17, 5867 (2009). (source)
T. C. Chu, W.-C Liu, D. P. Tsai, and Y. Kawata, Readout signals enhancements of subwavelength recording marks via random nanostructures, Jpn. J. Appl. Phys. 47, 5767 (2008).
M.-Y. Ng and W.-C. Liu, Controlling surface plasmon excitation of pair arrays of metallic nanocylinders, Appl. Phys. A 89, 391 (2007).
B.-Y. Hsieh, Y.-F. Chang, M.-Y. Ng, W.-C. Liu, C.-H. Lin, H.-T. Wu, and C. Chou, Localized surface plasmon coupled fluorescence fiber-optic biosensor with gold nanoparticles, Analytical Chemistry 79, 3487 (2007).
T. C. Chu, D. P. Tsai, and W.-C Liu, Readout contrast beyond diffraction limit by a slab of random nanostructures, Opt. Express 15, 12 (2007). (source)
I. Samoylenko, T.-C. Chao, W.-C. Liu, and C.-M. Chen, Visualizing the scientific world and its evolution, Journal of the American Society for Information Science and Technology 57, 1461 (2006).
M.-Y. Ng and W.-C. Liu, Local-field confinement in three-pair arrays of metallic nanocylinders, Opt. Express 14, 4505 (2006). (source)
W.-C. Liu, High sensitivity of surface plasmon of weakly-distorted metallic surfaces, Opt. Express 13, 9766 (2005). (source)
M.-Y. Ng and W.-C. Liu, Super-resolution and frequency-dependent efficiency of near-field optical disks with silver nanoparticles, Opt. Express 13, 9422 (2005).(source)
M.-Y. Ng and W.-C. Liu, Local field enhancement of asymmetric metallic nanocylinder pairs, Journal of Korean Physics Society, 47, S135 (2005).
T. C. Chu, D. P. Tsai, and W.-C. Liu, Surface plasmon resonance in metallic nanocylinder array, Journal of Korean Physics Society, 47, S194 (2005).
T. C. Chu, W.-C. Liu, and D. P. Tsai, Enhanced resolution induced by random silver nanoparticles in near-field optical disks, Opt. Comm. 246, 561 (2005).
W.-C. Liu and D. P. Tsai, Evanescent signal detection and enhanced resolution with random silver nanoparticles, Scanning, 26, I-94 (2004) .
W.-C. Liu, M.-Y. Ng, and D. P. Tsai, Enhanced resolution of AgOx-type super-RENS disks with periodic silver nanoclusters, Scanning, 26, I-98 (2004).
T. C. Chu, W.-C. Liu, and D. P. Tsai, Near- and far-field optical properties of embedded scatters in AgOx-type super-resolution near-field structures, Scanning 26, I-102 (2004).
Y. H. Fu, W.-C. Liu, and D. P. Tsai, Probing the focused laser spot of the apodized light source, Scanning 26, I-52 (2004).
C. C. Yu, T. S. Kao, W. C. Lin, W. C. Liu, and D. P. Tsai, Study of optical transmittance of AgOx nano thin film in super-resolution near-field structure, Scanning 26, I-90 (2004).
N. H. Lu, C. Y. Chen, C. S. Lin, W.-C. Liu, and D. P. Tsai, Imaging near-field transverse modes of vertical-cavity surface-emitting lasers by near-field scanning optical microscopy, Scanning 26, I-43 (2004).
W.-C. Liu, M.-Y. Ng, and D. P. Tsai, Surface plasmon effects on the far-field signals of AgOx-type super-resolution near-field structure, Jpn. J. Appl. Phys. 43, 4713 (2004).
Y. H. Fu, F. H. Ho, W. C. Lin, W.-C. Liu, and D. P. Tsai, Study of the focused laser spots generated by various polarized laser beam conditions, J. Microscopy, 210, 225 (2003).
R. Panfili and W.-C. Liu, Resonances in the double-ionization signal of two-electron model atoms, Phys. Rev. A 67, 43402 (2003).
W.-C. Liu and D. P. Tsai, Nonlinear near-field optical effects of the AgOx-type super-resolution near-field structure, Jpn. J. Appl. Phys. 42, 1031 (2003).
W.-C. Liu and D. P. Tsai, Optical Tunneling Effect of Surface Plasmon Polariton and Localized Surface Plasmon Resonance, Phys. Rev. B 65, 155423 (2002).
F. H. Ho, W. Y. Lin, H. H. Chang, Y. H. Lin, W.-C. Liu, and D. P. Tsai, Nonlinear optical absorption in the AgOx-type super-resolution near-field structure, Jpn. J. Appl. Phys. 40, 4101 (2001).
W.-C. Liu, C.-Y. Wen, K.-H. Chen, W. C. Lin, and D. P. Tsai, Near-field images of the AgOx-type super-resolution near-field structure, Appl. Phys. Lett. 78, 685 (2001).
W.-C. Liu, S. N. Houde-Walter, D. L. Veasey, and A. P. Peskin, Design and optimization of a diode-pumped fiber-coupled Yb:Er glass waveguide laser, Appl. Opt. 39, 6165 (2000).
Stan Haan, N. Hoekema, S. Poniatowski, W.-C. Liu, and J. H. Eberly, Directional correlation in direct and sequential double ionization of model atoms, Opt. Express 7, 29 (2000). (source)
C. Szymanowski, R. Panfili, W.-C. Liu, S. L. Haan, and J. H. Eberly, The role of the correlation charge in double ionization of two-electron model atoms exposed to intense laser fields, Phys. Rev. A 61, 55401 (2000).
D. L. Veasey, D. S. Funk, P. M. Peters, N. A. Sanford, G. E. Obarski, N. Fontaine, M. Young, A. P. Peskin, W.-C. Liu, S. N. Houde-Walter, J. S. Hayden, Yb/Er-codoped and Yb-doped waveguide lasers in phosphate glass, J. Non-crystalline Solids 263&264, 369 (2000).
W.-C. Liu, J. H. Eberly, S. L. Haan, and R. Grobe, Correlation effects in two-electron model atoms in intense laser fields, Phys. Rev. Lett. 83, 520 (1999).
W.-C. Liu and M. W. Kowarz, Vector diffraction from subwavelength optical disk structure: two-dimensional modeling of near-field profiles, far-field intensities, and detector signals from a DVD, Appl. Opt. 38, 3787 (1999).
W.-C. Liu and M. W. Kowarz,Vector diffraction from subwavelength optical disk structures: Two-dimensional near-field profiles, Opt. Express 2, 191 (1998). (source)
W.-C. Liu, High-order nonlinear susceptibilities of helium, Phys. Rev. A 56, 4938 (1997).
W.-C. Liu and C.W. Clark, Intensity-dependence of the phase of harmonics in one- and two-frequency laser fields, Phys. Rev. A 53, 3582 (1996).
W.-C. Liu and C.W. Clark, Closed-form solutions of the Schrodinger equation for a model one-dimensional hydrogen atom, J. Phys. B, 25, L517(1992).
W.-C. Liu and P.-H. Tsao, Critical exponents and critical slowing down in optical bistability - a phenomenological approach, Mod. Phys. Lett. B, 6, 358(1992).
Last modified: 2011-12-12
wcliu@phy.ntnu.edu.tw