Dongxing Wang, Ph.D. - Publications

Affiliations: 
2013 Engineering and Applied Sciences Harvard University, Cambridge, MA, United States 

18 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2015 Andrews AB, Wang D, Marzec KM, Mullins OC, Crozier KB. Surface enhanced Raman spectroscopy of polycyclic aromatic hydrocarbons and molecular asphaltenes Chemical Physics Letters. 620: 139-143. DOI: 10.1016/J.Cplett.2014.12.014  0.531
2014 Crozier KB, Zhu W, Wang D, Lin S, Best MD, Camden JP. Plasmonics for surface enhanced raman scattering: Nanoantennas for single molecules Ieee Journal On Selected Topics in Quantum Electronics. 20. DOI: 10.1109/Jstqe.2013.2282257  0.733
2013 Wang D, Zhu W, Best MD, Camden JP, Crozier KB. Wafer-scale metasurface for total power absorption, local field enhancement and single molecule Raman spectroscopy. Scientific Reports. 3: 2867. PMID 24091825 DOI: 10.1038/Srep02867  0.653
2013 Wang D, Zhu W, Best MD, Camden JP, Crozier KB. Directional Raman scattering from single molecules in the feed gaps of optical antennas. Nano Letters. 13: 2194-8. PMID 23550513 DOI: 10.1021/Nl400698W  0.715
2012 Ellenbogen T, Wang D, Crozier KB. Generation of quasi-coherent cylindrical vector beams by leaky mirrorless laser Optics Express. 20: 28862-28870. PMID 23263127 DOI: 10.1364/Oe.20.028862  0.593
2012 Zhu W, Wang D, Crozier KB. Direct observation of beamed Raman scattering. Nano Letters. 12: 6235-43. PMID 23101429 DOI: 10.1021/Nl303297B  0.727
2012 Wang D, Zhu W, Chu Y, Crozier KB. High directivity optical antenna substrates for surface enhanced raman scattering Advanced Materials. 24: 4376-4380. PMID 22760820 DOI: 10.1002/Adma.201201625  0.75
2012 Ellenbogen T, Wang D, Crozier KB. Stimulated emission of cylindrical vector beams from a dye-doped slab waveguide Frontiers in Optics, Fio 2012. DOI: 10.1364/Fio.2012.Fth4D.1  0.56
2012 Zhu W, Wang D, Crozier KB. Direct observation of beamed Raman scattering Nano Letters. 12: 6235-6243. DOI: 10.1021/nl303297b  0.611
2012 Zhu W, Wang D, Chu Y, Crozier KB. Collimation of Raman scattering with plasmonic structures 2012 Conference On Lasers and Electro-Optics, Cleo 2012 0.723
2012 Wang D, Zhu W, Chu Y, Best MD, Camden JP, Crozier KB. Single molecule surface enhanced Raman spectroscopy with an optical antenna chip 2012 Conference On Lasers and Electro-Optics, Cleo 2012 0.728
2011 Chu Y, Zhu W, Wang D, Crozier KB. Beamed raman: Directional excitation and emission enhancement in a plasmonic crystal double resonance SERS substrate Optics Express. 19: 20054-20068. PMID 21997016 DOI: 10.1364/Oe.19.020054  0.72
2011 Chu Y, Wang D, Zhu W, Crozier KB. Double resonance surface enhanced Raman scattering substrates: An intuitive coupled oscillator model Optics Express. 19: 14919-14928. PMID 21934853 DOI: 10.1364/Oe.19.014919  0.694
2011 Liu B, Wang D, Shi C, Crozier KB, Yang T. Vertical optical antennas integrated with spiral ring gratings for large local electric field enhancement and directional radiation. Optics Express. 19: 10049-56. PMID 21643263 DOI: 10.1364/Oe.19.010049  0.651
2011 Zhu W, Banaee MG, Wang D, Chu Y, Crozier KB. Lithographically fabricated optical antennas with gaps well below 10 nm Small. 7: 1761-1766. PMID 21591254 DOI: 10.1002/Smll.201100371  0.742
2011 Wang D, Yang T, Crozier KB. Optical antennas integrated with concentric ring gratings: Electric field enhancement and directional radiation Optics Express. 19: 2148-2157. PMID 21369032 DOI: 10.1364/Oe.19.002148  0.639
2011 Liu B, Wang D, Shi C, Crozier KB, Yang T. Vertical optical antennas integrated with spiral ring gratings for large local electric field enhancement and directional radiation Optics Express. 19: 10049-10056. DOI: 10.1364/OE.19.010049  0.575
2010 Wang D, Yang T, Crozier KB. Charge and current reservoirs for electric and magnetic field enhancement. Optics Express. 18: 10388-94. PMID 20588894 DOI: 10.1364/Oe.18.010388  0.562
Show low-probability matches.