60
R. W. Taylor and V. Sandoghdar
56. D.R. Pettit, T.W. Peterson, Coherent detection of scattered light from submicron aerosols.
Aerosol Sci. Technol. 2(3), 351–368 (1982)
57. J.S. Batchelder, M.A. Taubenblatt, Interferometric detection of forward scattered light from
small particles. Appl. Phys. Lett. 55(3), 215–217 (1989)
58. D.W. Pohl, W. Denk, M. Lanz, Optical stethoscopy: Image recording with resolution λ/20.
Appl. Phys. Lett. 44(7), 651–653 (1984)
59. G. Binnig, C.F. Quate, Ch. Gerber, Atomic Force Microscope. Phys. Rev. Lett. 56(9), 930–933
(1986)
60. W.E. Moerner, L. Kador, Optical detection and spectroscopy of single molecules in a solid.
Phys. Rev. Lett. 62(21), 2535–2538 (1989)
61. R.P. Feynman, There’s plenty of room at the bottom. Eng. Sci. 23(5), 22–36 (1960)
62. F. Zenhausern, M.P. O’Boyle, H.K. Wickramasinghe, Apertureless near-field optical microscope. Appl. Phys. Lett. 65(13), 1623–1625 (1994)
63. V. Sandoghdar et al., Reflection scanning near-field optical microscopy with uncoated fiber
tips: How good is the resolution really? J. Appl. Phys. 81(6), 2499–2503 (1997)
64. R. Hillenbrand, B. Knoll, F. Keilmann, Pure optical contrast in scattering-type scanning nearfield microscopy. J. Microsc. 202(1), 77–83 (2001)
65. T. Taubner, R. Hillenbrand, F. Keilmann, Performance of visible and mid-infrared scatteringtype near-field optical microscopes. J. Microsc. 210(3), 311–314 (2003)
66. I. Amenabar et al., Structural analysis and mapping of individual protein complexes by infrared
nanospectroscopy. Nat. Commun. 4, 1–9 (2013)
67. T. Klar et al., Surface-plasmon resonances in single metallic nanoparticles. Phys. Rev. Lett.
80(19), 4249–4252 (1998)
68. S. Schultz, D.R. Smith, J.J. Mock, D.A. Schultz, Single-target molecule detection with nonbleaching multicolor optical immunolabels. Proc. Natl. Acad. Sci. U.S.A. 97(3), 996–1001
(2000)
69. C. Sönnichsen et al., Spectroscopy of single metallic nanoparticles using total internal reflection microscopy. Appl. Phys. Lett. 77(19), 2949–2951 (2000)
70. M.Y. Sfeir et al., Probing electronic transitions in individual carbon nanotubes by Rayleigh
scattering. Science 306(5701), 1540–1543 (2004)
71. D. Boyer et al., Photothermal imaging of nanometer-sized metal particles among scatterers.
Science 297(5584), 1160–1163 (2002)
72. S. Berciaud et al., Photothermal heterodyne imaging of individual nonfluorescent nanoclusters
and nanocrystals. Phys. Rev. Lett. 93(25), 2–5 (2004)
73. K. Lindfors et al., Detection and spectroscopy of gold nanoparticles using supercontinuum
white light confocal microscopy. Phys. Rev. Lett. 93(3), 037401 (2004)
74. A. Arbouet et al., Direct measurement of the single-metal-cluster optical absorption. Phys.
Rev. Lett. 93(12), 127401 (2004)
75. S. Simmert et al., LED-based interference-reflection microscopy combined with optical tweezers for quantitative three-dimensional microtubule imaging. Opt. Express 26(11), 14499
(2018)
76. M. Mahamdeh et al., Label-free high-speed wide-field imaging of single microtubules using
interference reflection microscopy. J. Microsc. 272(1), 60–66 (2018)
77. G.G. Daaboul et al., High-throughput detection and sizing of individual low-index nanoparticles and viruses for pathogen identification. Nano Lett. 10(11), 4727–4731 (2010)
78. O. Avci et al., Interferometric Reflectance Imaging Sensor (IRIS)–A Platform Technology
for Multiplexed Diagnostics and Digital Detection. Sensors 15(7), 17649–17665 (2015)
79. A. Yurt et al., High-throughput size determination of nearly spherical gold nanoparticles, in
2011 XXXth URSI General Assembly and Scientific Symposium, vol. 1 (2011), pp. 1–4
80. A. Matlock et al., Differential Phase Contrast and Digital Refocusing in a Computational
Reflection Interferometric Microscope for Nanoparticle Imaging CTh4B.2 (2017)
81. S.M. Scherr et al., Real-time capture and visualization of individual viruses in complex media.
ACS Nano 10(2), 2827–2833 (2016)
R. W. Taylor and V. Sandoghdar
56. D.R. Pettit, T.W. Peterson, Coherent detection of scattered light from submicron aerosols.
Aerosol Sci. Technol. 2(3), 351–368 (1982)
57. J.S. Batchelder, M.A. Taubenblatt, Interferometric detection of forward scattered light from
small particles. Appl. Phys. Lett. 55(3), 215–217 (1989)
58. D.W. Pohl, W. Denk, M. Lanz, Optical stethoscopy: Image recording with resolution λ/20.
Appl. Phys. Lett. 44(7), 651–653 (1984)
59. G. Binnig, C.F. Quate, Ch. Gerber, Atomic Force Microscope. Phys. Rev. Lett. 56(9), 930–933
(1986)
60. W.E. Moerner, L. Kador, Optical detection and spectroscopy of single molecules in a solid.
Phys. Rev. Lett. 62(21), 2535–2538 (1989)
61. R.P. Feynman, There’s plenty of room at the bottom. Eng. Sci. 23(5), 22–36 (1960)
62. F. Zenhausern, M.P. O’Boyle, H.K. Wickramasinghe, Apertureless near-field optical microscope. Appl. Phys. Lett. 65(13), 1623–1625 (1994)
63. V. Sandoghdar et al., Reflection scanning near-field optical microscopy with uncoated fiber
tips: How good is the resolution really? J. Appl. Phys. 81(6), 2499–2503 (1997)
64. R. Hillenbrand, B. Knoll, F. Keilmann, Pure optical contrast in scattering-type scanning nearfield microscopy. J. Microsc. 202(1), 77–83 (2001)
65. T. Taubner, R. Hillenbrand, F. Keilmann, Performance of visible and mid-infrared scatteringtype near-field optical microscopes. J. Microsc. 210(3), 311–314 (2003)
66. I. Amenabar et al., Structural analysis and mapping of individual protein complexes by infrared
nanospectroscopy. Nat. Commun. 4, 1–9 (2013)
67. T. Klar et al., Surface-plasmon resonances in single metallic nanoparticles. Phys. Rev. Lett.
80(19), 4249–4252 (1998)
68. S. Schultz, D.R. Smith, J.J. Mock, D.A. Schultz, Single-target molecule detection with nonbleaching multicolor optical immunolabels. Proc. Natl. Acad. Sci. U.S.A. 97(3), 996–1001
(2000)
69. C. Sönnichsen et al., Spectroscopy of single metallic nanoparticles using total internal reflection microscopy. Appl. Phys. Lett. 77(19), 2949–2951 (2000)
70. M.Y. Sfeir et al., Probing electronic transitions in individual carbon nanotubes by Rayleigh
scattering. Science 306(5701), 1540–1543 (2004)
71. D. Boyer et al., Photothermal imaging of nanometer-sized metal particles among scatterers.
Science 297(5584), 1160–1163 (2002)
72. S. Berciaud et al., Photothermal heterodyne imaging of individual nonfluorescent nanoclusters
and nanocrystals. Phys. Rev. Lett. 93(25), 2–5 (2004)
73. K. Lindfors et al., Detection and spectroscopy of gold nanoparticles using supercontinuum
white light confocal microscopy. Phys. Rev. Lett. 93(3), 037401 (2004)
74. A. Arbouet et al., Direct measurement of the single-metal-cluster optical absorption. Phys.
Rev. Lett. 93(12), 127401 (2004)
75. S. Simmert et al., LED-based interference-reflection microscopy combined with optical tweezers for quantitative three-dimensional microtubule imaging. Opt. Express 26(11), 14499
(2018)
76. M. Mahamdeh et al., Label-free high-speed wide-field imaging of single microtubules using
interference reflection microscopy. J. Microsc. 272(1), 60–66 (2018)
77. G.G. Daaboul et al., High-throughput detection and sizing of individual low-index nanoparticles and viruses for pathogen identification. Nano Lett. 10(11), 4727–4731 (2010)
78. O. Avci et al., Interferometric Reflectance Imaging Sensor (IRIS)–A Platform Technology
for Multiplexed Diagnostics and Digital Detection. Sensors 15(7), 17649–17665 (2015)
79. A. Yurt et al., High-throughput size determination of nearly spherical gold nanoparticles, in
2011 XXXth URSI General Assembly and Scientific Symposium, vol. 1 (2011), pp. 1–4
80. A. Matlock et al., Differential Phase Contrast and Digital Refocusing in a Computational
Reflection Interferometric Microscope for Nanoparticle Imaging CTh4B.2 (2017)
81. S.M. Scherr et al., Real-time capture and visualization of individual viruses in complex media.
ACS Nano 10(2), 2827–2833 (2016)
