134
N. Rahbany et al.
References
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Appl. Phys. Lett. 44(7), 651–653 (1984)
2. D. Costantini, L. Greusard, A. Bousseksou, R. Rungsawang, T.P. Zhang, S. Callard, J. Decobert,
F. Lelarge, G.-H. Duan, Y. De Wilde, R. Colombelli, In situ generation of surface plasmon
polaritons using a near-infrared laser diode. Nano Lett. 12(9), 4693–4697 (2012)
3. E.H. Synge, A suggested method for extending microscopic resolution into the ultramicroscopic region. Lond. Edinb. Dublin Philos. Mag. J. Sci. 6(35), 356–362 (1928)
4. E.H. Synge, An application of piezo-electricity to microscopy. Lond. Edinb. Dublin Philos.
Mag. J. Sci. 13(83), 297–300 (1932)
5. U. Dürig, D.W. Pohl, F. Rohner, Near-field optical-scanning microscopy. J. Appl. Phys. 59(10),
3318–3327 (1986)
6. L. Novotny, B. Hecht, Principles of Nano-Optics (Cambridge University Press, 2006)
7. E.J. Sánchez, L. Novotny, X.S. Xie, Near-field fluorescence microscopy based on two-photon
excitation with metal tips. Phys. Rev. Lett. 82(20), 4014 (1999)
8. J.-J. Greffet, R. Carminati, Image formation in near-field optics. Prog. Surf. Sci. 56(3), 133–237
(1997)
9. D. Costantini, A. Bousseksou, M. Fevrier, B. Dagens, R. Colombelli, Loss and gain measurements of tensile-strained quantum well diode lasers for plasmonic devices at telecom
wavelengths. IEEE J. Quantum Electron. 48(1), 73–78 (2012)
10. H.A. Bethe, Theory of diffraction by small holes. Phys. Rev. 66(7–8), 163 (1944)
11. C. Obermüller, K. Karrai, Far field characterization of diffracting circular apertures. Appl.
Phys. Lett. 67(23), 3408–3410 (1995)
12. C. Obermüller, K. Karrai, G. Kolb, G. Abstreiter, Transmitted radiation through a
subwavelength-sized tapered optical fiber tip. Ultramicroscopy 61(1), 171–177 (1995)
13. A. Drezet, J.C. Woehl, S. Huant, Diffraction by a small aperture in conical geometry: application
to metal-coated tips used in near-field scanning optical microscopy. Phys. Rev. E 65(4) (2002)
14. D. Denkova, N. Verellen, A.V. Silhanek, V.K. Valev, P.V. Dorpe, V.V. Moshchalkov, Mapping magnetic near-field distributions of plasmonic nanoantennas. ACS Nano 7(4), 3168–3176
(2013)
15. A. Babuty, K. Joulain, P.-O. Chapuis, J.-J. Greffet, Y. De Wilde, Blackbody spectrum revisited
in the near field. Phys. Rev. Lett. 110(14), 146103 (2013)
16. K. Joulain, P. Ben-Abdallah, P.-O. Chapuis, Y. De Wilde, A. Babuty, C. Henkel, Strong tip–sample coupling in thermal radiation scanning tunneling microscopy. J. Quant. Spectrosc. Radiat.
Transf. 136(Supplement C), 1–15 (2014)
17. B. Hecht, H. Bielefeldt, L. Novotny, Y. Inouye, D.W. Pohl, Local excitation, scattering, and
interference of surface plasmons. Phys. Rev. Lett. 77(9), 1889–1892 (1996)
18. A. Drezet, C. Genet, Imaging surface plasmons: from leaky waves to far-field radiation. Phys.
Rev. Lett. 110(21), 213901 (2013)
19. P. Bharadwaj, A. Bouhelier, L. Novotny, Electrical excitation of surface plasmons. Phys. Rev.
Lett. 106(22) (2011)
20. R. Marty, C. Girard, A. Arbouet, G. Colas des Francs, Near-field coupling of a point-like dipolar
source with a thin metallic film: implication for STM plasmon excitations. Chem. Phys. Lett.
532, 100–105 (2012)
21. A. Drezet, A. Hohenau, D. Koller, A. Stepanov, H. Ditlbacher, B. Steinberger, F.R. Aussenegg,
A. Leitner, J.R. Krenn, Leakage radiation microscopy of surface plasmon polaritons. Mater.
Sci. Eng. B 149(3), 220–229 (2008)
22. M. Berthel, Q. Jiang, A. Pham, J. Bellessa, C. Genet, S. Huant, A. Drezet, Directional local
density of states of classical and quantum propagating surface plasmons. Phys. Rev. Appl. 7(1),
14021 (2017)
23. A.G. Curto, G. Volpe, T.H. Taminiau, M.P. Kreuzer, R. Quidant, N.F. van Hulst, Unidirectional
emission of a quantum dot coupled to a nanoantenna. Science 329(5994), 930–933 (2010)
N. Rahbany et al.
References
1. D.W. Pohl, W. Denk, M. Lanz, Optical stethoscopy: image recording with resolution λ/20.
Appl. Phys. Lett. 44(7), 651–653 (1984)
2. D. Costantini, L. Greusard, A. Bousseksou, R. Rungsawang, T.P. Zhang, S. Callard, J. Decobert,
F. Lelarge, G.-H. Duan, Y. De Wilde, R. Colombelli, In situ generation of surface plasmon
polaritons using a near-infrared laser diode. Nano Lett. 12(9), 4693–4697 (2012)
3. E.H. Synge, A suggested method for extending microscopic resolution into the ultramicroscopic region. Lond. Edinb. Dublin Philos. Mag. J. Sci. 6(35), 356–362 (1928)
4. E.H. Synge, An application of piezo-electricity to microscopy. Lond. Edinb. Dublin Philos.
Mag. J. Sci. 13(83), 297–300 (1932)
5. U. Dürig, D.W. Pohl, F. Rohner, Near-field optical-scanning microscopy. J. Appl. Phys. 59(10),
3318–3327 (1986)
6. L. Novotny, B. Hecht, Principles of Nano-Optics (Cambridge University Press, 2006)
7. E.J. Sánchez, L. Novotny, X.S. Xie, Near-field fluorescence microscopy based on two-photon
excitation with metal tips. Phys. Rev. Lett. 82(20), 4014 (1999)
8. J.-J. Greffet, R. Carminati, Image formation in near-field optics. Prog. Surf. Sci. 56(3), 133–237
(1997)
9. D. Costantini, A. Bousseksou, M. Fevrier, B. Dagens, R. Colombelli, Loss and gain measurements of tensile-strained quantum well diode lasers for plasmonic devices at telecom
wavelengths. IEEE J. Quantum Electron. 48(1), 73–78 (2012)
10. H.A. Bethe, Theory of diffraction by small holes. Phys. Rev. 66(7–8), 163 (1944)
11. C. Obermüller, K. Karrai, Far field characterization of diffracting circular apertures. Appl.
Phys. Lett. 67(23), 3408–3410 (1995)
12. C. Obermüller, K. Karrai, G. Kolb, G. Abstreiter, Transmitted radiation through a
subwavelength-sized tapered optical fiber tip. Ultramicroscopy 61(1), 171–177 (1995)
13. A. Drezet, J.C. Woehl, S. Huant, Diffraction by a small aperture in conical geometry: application
to metal-coated tips used in near-field scanning optical microscopy. Phys. Rev. E 65(4) (2002)
14. D. Denkova, N. Verellen, A.V. Silhanek, V.K. Valev, P.V. Dorpe, V.V. Moshchalkov, Mapping magnetic near-field distributions of plasmonic nanoantennas. ACS Nano 7(4), 3168–3176
(2013)
15. A. Babuty, K. Joulain, P.-O. Chapuis, J.-J. Greffet, Y. De Wilde, Blackbody spectrum revisited
in the near field. Phys. Rev. Lett. 110(14), 146103 (2013)
16. K. Joulain, P. Ben-Abdallah, P.-O. Chapuis, Y. De Wilde, A. Babuty, C. Henkel, Strong tip–sample coupling in thermal radiation scanning tunneling microscopy. J. Quant. Spectrosc. Radiat.
Transf. 136(Supplement C), 1–15 (2014)
17. B. Hecht, H. Bielefeldt, L. Novotny, Y. Inouye, D.W. Pohl, Local excitation, scattering, and
interference of surface plasmons. Phys. Rev. Lett. 77(9), 1889–1892 (1996)
18. A. Drezet, C. Genet, Imaging surface plasmons: from leaky waves to far-field radiation. Phys.
Rev. Lett. 110(21), 213901 (2013)
19. P. Bharadwaj, A. Bouhelier, L. Novotny, Electrical excitation of surface plasmons. Phys. Rev.
Lett. 106(22) (2011)
20. R. Marty, C. Girard, A. Arbouet, G. Colas des Francs, Near-field coupling of a point-like dipolar
source with a thin metallic film: implication for STM plasmon excitations. Chem. Phys. Lett.
532, 100–105 (2012)
21. A. Drezet, A. Hohenau, D. Koller, A. Stepanov, H. Ditlbacher, B. Steinberger, F.R. Aussenegg,
A. Leitner, J.R. Krenn, Leakage radiation microscopy of surface plasmon polaritons. Mater.
Sci. Eng. B 149(3), 220–229 (2008)
22. M. Berthel, Q. Jiang, A. Pham, J. Bellessa, C. Genet, S. Huant, A. Drezet, Directional local
density of states of classical and quantum propagating surface plasmons. Phys. Rev. Appl. 7(1),
14021 (2017)
23. A.G. Curto, G. Volpe, T.H. Taminiau, M.P. Kreuzer, R. Quidant, N.F. van Hulst, Unidirectional
emission of a quantum dot coupled to a nanoantenna. Science 329(5994), 930–933 (2010)
