Crossref journal-article
Springer Science and Business Media LLC
Scientific Reports (297)
Bibliography

Bosman, M., Ye, E., Tan, S. F., Nijhuis, C. A., Yang, J. K. W., Marty, R., Mlayah, A., Arbouet, A., Girard, C., & Han, M.-Y. (2013). Surface Plasmon Damping Quantified with an Electron Nanoprobe. Scientific Reports, 3(1).

Authors 10
  1. Michel Bosman (first)
  2. Enyi Ye (additional)
  3. Shu Fen Tan (additional)
  4. Christian A. Nijhuis (additional)
  5. Joel K. W. Yang (additional)
  6. Renaud Marty (additional)
  7. Adnen Mlayah (additional)
  8. Arnaud Arbouet (additional)
  9. Christian Girard (additional)
  10. Ming-Yong Han (additional)
References 48 Referenced 139
  1. Zewail, A. H. 4D ultrafast electron diffraction, crystallography and microscopy. Annu. Rev. Phys. Chem. 57, 65–103 (2006). (10.1146/annurev.physchem.57.032905.104748) / Annu. Rev. Phys. Chem. by AH Zewail (2006)
  2. Stockman, M. I. Nanoplasmonics: past, present and glimpse into future. Opt. Express 19, 22029–22106 (2011). (10.1364/OE.19.022029) / Opt. Express by MI Stockman (2011)
  3. Zuloaga, J. & Nordlander, P. On the energy shift between near-field and far-field peak intensities in localized plasmon systems. Nano Lett 11, 1280–1283 (2011). (10.1021/nl1043242) / Nano Lett by J Zuloaga (2011)
  4. Feynman, R. P., Leighton, R. B. & Sands, M. The Feynman Lectures on Physics. Vol. 1, Chapter 24, Addison-Wesley, Reading MA, (1963).
  5. Batson, P. E. Damping of bulk plasmons in small aluminum spheres. Solid State Comm. 34, 477–480 (1980). (10.1016/0038-1098(80)90655-9) / Solid State Comm. by PE Batson (1980)
  6. Bosman, M., Keast, V. J., Watanabe, M., Maaroof, A. I. & Cortie, M. B. Mapping surface plasmons at the nanometre scale with an electron beam. Nanotechnology 18, 165505 (2007). (10.1088/0957-4484/18/16/165505) / Nanotechnology by M Bosman (2007)
  7. Duan, H., Fernández-Domínguez, A. I., Bosman, M., Maier, S. A. & Yang, J. K. W. Nanoplasmonics: classical down to the nanometer scale. Nano Lett. 12, 1683–1689 (2012). (10.1021/nl3001309) / Nano Lett. by H Duan (2012)
  8. Mook, H. W. & Kruit, P. Construction and characterization of the fringe field monochromator for a field emission gun. Ultramicroscopy 81, 129–139 (2000). (10.1016/S0304-3991(99)00193-X) / Ultramicroscopy by HW Mook (2000)
  9. Koch, C. T., Sigle, W., Höschen, R., Rühle, M., Essers, E., Benner, G. & Matijevic, M. SESAM: exploring the frontiers of electron microscopy. Microscopy and Microanalysis 12, 506–514 (2006). (10.1017/S1431927606060624) / Microscopy and Microanalysis by CT Koch (2006)
  10. Bosman, M. & Keast, V. J. Optimizing EELS acquisition. Ultramicroscopy 108, 837–846 (2008). (10.1016/j.ultramic.2008.02.003) / Ultramicroscopy by M Bosman (2008)
  11. Luk'yanchuk, B. S., Tribelsky, M. I., Ternovsky, V., Wang, Z. B., Hong, M. H., Shi, L. P. & Chong, T. C. Peculiarities of light scattering by nanoparticles and nanowires near plasmon resonance frequencies in weakly dissipating materials. J. Opt. A: Pure Appl. Opt. 9, S294–S300 (2007). (10.1088/1464-4258/9/9/S03) / J. Opt. A: Pure Appl. Opt. by BS Luk'yanchuk (2007)
  12. Lamprecht, B., Leitner, A. & Aussenegg, F. SHG studies of plasmon dephasing in nanoparticles. Appl. Phys. B: Lasers and Optics 68, 419–423 (1999). (10.1007/s003400050643) / Appl. Phys. B: Lasers and Optics by B Lamprecht (1999)
  13. Lamprecht, B., Krenn, J. R., Leitner, A. & Aussenegg, F. R. Resonant and off-resonant light-driven plasmons in metal nanoparticles studied by femtosecond-resolution third-harmonic generation. Phys. Rev. Lett. 83, 4421–4424 (1999). (10.1103/PhysRevLett.83.4421) / Phys. Rev. Lett. by B Lamprecht (1999)
  14. Sönnichsen, C., Franzl, T., Wilk, T., von Plessen, G. & Feldmann, J. Drastic reduction of plasmon damping in gold nanorods. Phys. Rev. Let. 88, 077402 (2002). (10.1103/PhysRevLett.88.077402) / Phys. Rev. Let. by C Sönnichsen (2002)
  15. Bosbach, J., Hendrich, C., Stietz, F., Vartanyan, T. & Träger, F. Ultrafast dephasing of surface plasmon excitation in silver nanoparticles: influence of particle size, shape and chemical surrounding. Phys. Rev. Lett. 89, 257404 (2002). (10.1103/PhysRevLett.89.257404) / Phys. Rev. Lett. by J Bosbach (2002)
  16. Klar, T., Perner, M., Grosse, S., von Plessen, G., Spirkl, W. & Feldmann, J. surface-plasmon resonances in single metallic nanoparticles. Phys. Rev. Lett. 80, 4249 (1989). (10.1103/PhysRevLett.80.4249) / Phys. Rev. Lett. by T Klar (1989)
  17. Lehmann, J., Merschdorf, M., Pfeiffer, W., Thon, A., Voll, S. & Gerber, G. Surface plasmon dynamics in silver nanoparticles studied by femtosecond time-resolved photoemission. Phys. Rev. Lett. 85, 2921–2924 (2000). (10.1103/PhysRevLett.85.2921) / Phys. Rev. Lett. by J Lehmann (2000)
  18. Scharte, M., Porath, R., Ohms, T., Aeschlimann, M., Krenn, J., Ditlbacher, H., Aussenegg, F. & Liebsch, A. Do Mie plasmons have a longer lifetime on resonance than off resonance? Appl. Phys. B: Lasers and Optics 73, 305–310 (2001). (10.1007/s003400100701) / Appl. Phys. B: Lasers and Optics by M Scharte (2001)
  19. Anderson, A., Deryckx, K. S., Xu, X. G., Steinmeyer, G. & Raschke, M. B. Few-femtosecond plasmon dephasing of a single metallic nanostructure from optical response function reconstruction by interferometric frequency resolved optical gating. Nano Lett. 10, 2519–2524 (2010). (10.1021/nl101090s) / Nano Lett. by A Anderson (2010)
  20. Tiemeijer, P. C., Bischoff, M., Freitag, B. & Kisielowski, C. Using a monochromator to improve the resolution in TEM to below 0.5 Å. Part I: Creating highly coherent monochromatd illumination. Ultramicroscopy 114, 72–81 (2012). (10.1016/j.ultramic.2012.01.008) / Ultramicroscopy by PC Tiemeijer (2012)
  21. Olivero, J. J. & Longbothum, R. L. Empirical fits to the Voigt line width: a brief review. J. Quant. Spectrosc. Radiat. Transfer 17, 233–236 (1977). (10.1016/0022-4073(77)90161-3) / J. Quant. Spectrosc. Radiat. Transfer by JJ Olivero (1977)
  22. Rossouw, D., Couillard, M., Vickery, J., Kumacheva, E. & Botton, G. A. Multipolar plasmonic resonances in silver nanowire antennas imaged with a subnanometer electron probe. Nano Lett. 11, 1499–1504 (2011). (10.1021/nl200634w) / Nano Lett. by D Rossouw (2011)
  23. García de Abajo, F. J. Optical excitations in electron microscopy. Rev. Mod. Phys. 82, 209–275 (2010). (10.1103/RevModPhys.82.209) / Rev. Mod. Phys. by FJ García de Abajo (2010)
  24. Myroshnychenko, V., Rodríguez-Fernández, J., Pastoriza-Santos, I., Funston, A. M., Novo, C., Mulvaney, P., Liz-Marzán, L. M. & García de Abajo, F. J. Modelling the optical response of gold nanoparticles. Chem. Soc. Rev. 37, 1792–1805 (2008). (10.1039/b711486a) / Chem. Soc. Rev. by V Myroshnychenko (2008)
  25. Ye, E., Win, K. Y., Tan, H. R., Lin, M., Teng, C. P., Mlayah, A. & Han, M.-Y. Plasmonic gold nanocrosses with multidirectional excitation and strong photothermal effect. J. Am. Chem. Soc. 133, 8506–8509 (2011). (10.1021/ja202832r) / J. Am. Chem. Soc. by E Ye (2011)
  26. Bryant, G. W., García de Abajo, F. J. & Aizpurua, J. Mapping the plasmon resonances of metallic nanoantennas. Nano Lett. 8, 631–636 (2008). (10.1021/nl073042v) / Nano Lett. by GW Bryant (2008)
  27. Zuloaga, J. & Nordlander, P. On the energy shift between near-field and far-field peak intensities in localized plasmon systems. Nano Lett. 11, 1280–1283 (2011). (10.1021/nl1043242) / Nano Lett. by J Zuloaga (2011)
  28. Stockman, M. I., Faleev, S. V. & Bergman, D. J. Localization versus delocalization of surface plasmons in nanosystems: can one state have both characteristics? Phys. Rev. Lett. 87, 167401 (2001). (10.1103/PhysRevLett.87.167401) / Phys. Rev. Lett. by MI Stockman (2001)
  29. Della Valle, G., Søndergaard, T. & Bozhevolnyi, S. I. High-Q plasmonic resonators based on metal split nanocylinders. Phys. Rev. B 80, 235405 (2009). (10.1103/PhysRevB.80.235405) / Phys. Rev. B by G Della Valle (2009)
  30. Khurgin, J. B. & Sun, G. Scaling of losses with size and wavelength in nanoplasmonics and metamaterials. Appl. Phys. Lett. 99, 211106 (2011). (10.1063/1.3664105) / Appl. Phys. Lett. by JB Khurgin (2011)
  31. Biagioni, P., Huang, J.-S. & Hecht, B. Nanoantennas for visible and infrared radiation. Rep. Prog. Phys. 75, 024402 (2012). (10.1088/0034-4885/75/2/024402) / Rep. Prog. Phys. by P Biagioni (2012)
  32. Hu, M., Novo, C., Funston, A., Wang, H., Staleva, H., Zou, S., Mulvaney, P., Xia, Y. & Hartland, G. V. Dark-field microscopy studies of single metal nanoparticles: understanding the factors that influence the linewidth of the localized surface plasmon resonance. J. Mater. Sci. 18, 1949–1960 (2008). / J. Mater. Sci. by M Hu (2008)
  33. Zorić, I., Zäch, M., Kasemo, B. & Langhammer, C. Gold, platinum and aluminum nanodisk plasmons: material independence, subradiance and damping mechanisms. ACS Nano 5, 2535–2546 (2011). (10.1021/nn102166t) / ACS Nano by I Zorić (2011)
  34. Knight, M. W., Sobhani, H., Nordlander, P. & Halas, N. J. Photodetection with active optical antennas. Science 332, 702–704 (2011). (10.1126/science.1203056) / Science by MW Knight (2011)
  35. Mazzucco, S., Stéphan, O., Colliex, C., Pastoriza-Santos, I., Liz-Marzan, L. M., Garcia de Abajo, F. J. & Kociak, M. Spatially resolved measurements of plasmonic eigenstates in complex-shaped, asymmetric nanoparticles: gold nanostars. Eur. Phys. J. Appl. Phys. 54, 33512 (2011). (10.1051/epjap/2011100443) / Eur. Phys. J. Appl. Phys. by S Mazzucco (2011)
  36. Mayoral, A., Magen, C. & Jose-yacaman, M. Nanoscale mapping of plasmon resonances of functional multibranched gold nanoparticles. Chem. Commum. 48, 8667–8669 (2012). (10.1039/c2cc34177h) / Chem. Commum. by A Mayoral (2012)
  37. García de Abajo, F. J. & Howie, A. Retarded field calculation of electron energy loss in inhomogeneous dielectrics. Phys. Rev. B 65, 115418 (2002). (10.1103/PhysRevB.65.115418) / Phys. Rev. B by FJ García de Abajo (2002)
  38. Nelayah, J., Kociak, M., Stéphan, O., García de Abajo, F. J., Tencé, M., Henrard, L., Taverna, D., Pastoriza-Santos, I., Liz-Marzán, L. M. & Colliex, C. Mapping surface plasmons on a single metallic nanoparticle. Nat. Phys. 3, 348–353 (2007). (10.1038/nphys575) / Nat. Phys. by J Nelayah (2007)
  39. Schaffer, B., Grogger, W., Kothleitner, G. & Hofer, F. Comparison of EFTEM and STEM EELS plasmon imaging of gold nanoparticles in a monochromated TEM. Ultramicroscopy 110, 1087–1093 (2010). (10.1016/j.ultramic.2009.12.012) / Ultramicroscopy by B Schaffer (2010)
  40. Bosman, M., Anstis, G. R., Keast, V. J., Clarke, J. D. & Cortie, M. B. Light splitting in nanoporous gold and silver. ACS Nano 6, 319–326 (2012). (10.1021/nn203600n) / ACS Nano by M Bosman (2012)
  41. Wu, L., Duan, H., Bai, P., Bosman, M., Yang, J. K. W. & Li, E. P. Fowler-Nordheim tunneling induced charge transfer plasmons between nearly-touching nanoparticles. ACS Nano 7, 707–716 (2013). (10.1021/nn304970v) / ACS Nano by L Wu (2013)
  42. Jana, N. R., Gearheart, L. & Murphy, C. J. Wet chemical synthesis of high aspect ratio cylindrical gold nanorods. J. Phys. Chem. B 105, 4065–4067 (2001). (10.1021/jp0107964) / J. Phys. Chem. B by NR Jana (2001)
  43. Draine, B. T. & Flatau, P. J. User guide to the discrete dipole approximation code DDSCAT 7.0, arXiv:0809.0337v5. (2008).
  44. Draine, B. T. & Flatau, P. J. Discrete-dipole approximation for periodic targets: theory and tests. J. Opt. Soc. Am. A. 25, 2593 (2008). (10.1364/JOSAA.25.002693) / J. Opt. Soc. Am. A. by BT Draine (2008)
  45. Johnson, P. B. & Christy, R. W. Optical constants of the noble metals. Phys. Rev. B. 6, 4370–4379 (1972). (10.1103/PhysRevB.6.4370) / Phys. Rev. B. by PB Johnson (1972)
  46. Colas des Francs, G., Girard, C., Weeber, J.-C., Chicanne, C., David, T., Dereux, A. & Peyrade, D. Optical analogy to electronic quantum corrals. Phys. Rev. Lett. 86, 4950 (2001). (10.1103/PhysRevLett.86.4950) / Phys. Rev. Lett. by G Colas des Francs (2001)
  47. García de Abajo, F. J. & Kociak, M. Probing the photonic local density of states with electron energy loss spectroscopy. Phys. Rev. Lett. 100, 106804–4 (2008). (10.1103/PhysRevLett.100.106804) / Phys. Rev. Lett. by FJ García de Abajo (2008)
  48. Girard, C. Near–field in nanostructures. Rep. Prog. Phys. 63, 1883–1933 (2005). (10.1088/0034-4885/68/8/R05) / Rep. Prog. Phys. by C Girard (2005)
Dates
Type When
Created 12 years, 6 months ago (Feb. 21, 2013, 5:05 a.m.)
Deposited 2 years, 7 months ago (Jan. 6, 2023, 12:53 a.m.)
Indexed 1 week, 4 days ago (Aug. 19, 2025, 6:07 a.m.)
Issued 12 years, 6 months ago (Feb. 21, 2013)
Published 12 years, 6 months ago (Feb. 21, 2013)
Published Online 12 years, 6 months ago (Feb. 21, 2013)
Funders 0

None

@article{Bosman_2013, title={Surface Plasmon Damping Quantified with an Electron Nanoprobe}, volume={3}, ISSN={2045-2322}, url={http://dx.doi.org/10.1038/srep01312}, DOI={10.1038/srep01312}, number={1}, journal={Scientific Reports}, publisher={Springer Science and Business Media LLC}, author={Bosman, Michel and Ye, Enyi and Tan, Shu Fen and Nijhuis, Christian A. and Yang, Joel K. W. and Marty, Renaud and Mlayah, Adnen and Arbouet, Arnaud and Girard, Christian and Han, Ming-Yong}, year={2013}, month=feb }