Attosecond Nanophysics: From Basic Science to Applications by Peter Hommelhoff, Matthias Kling

By Peter Hommelhoff, Matthias Kling

The 1st large and in-depth evaluate of present study in attosecond nanophysics, protecting the sector of lively plasmonics through attosecond technology in metals and dielectrics to novel imaging ideas with the top spatial and temporal resolution.
The authors are pioneers within the box and current right here new advancements and power novel functions for ultra-fast info verbal exchange and processing, discussing the research of the ordinary timescale of electron dynamics in nanoscale strong nation systems.
either an advent for beginning graduate scholars, in addition to a glance on the present cutting-edge during this scorching and rising box.

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Extra resources for Attosecond Nanophysics: From Basic Science to Applications

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Thus, the heat source density is also zero and the laser pulse itself does not deposit heat in the substrate. 7 (a) Overview, (b) side view, and (c) top view of one bow-tie antenna. (b) and (c) Top: heat source density of a bowtie antenna with 140 nm antenna length, 30∘ opening angle, 20 nm feed gap, 20 nm 0 –25 –50 50 1500 25 1000 0 500 –25 –50 –160 –120 –80 –40 (c) 0 40 80 120 160 x (nm) radius of curvature, and an antenna height of 30 nm; (b) and (c) bottom: corresponding normalized intensity enhancement.

Phys. Rev. 3204, printed. , and L’Huillier, A. (1999) Controlling phase matching 35 36 2 Nano-Antennae Assisted Emission of Extreme Ultraviolet Radiation 40. 41. 42. 43. 44. 45. 46. 47. 48. 49. of high-order harmonic generation by manipulating the fundamental field. Phys. Rev. 5010. , and Lewenstein, M. (1995) Coherence control of high-order harmonics. Phys. Rev. 3776. , and Herrmann, J. (2011) Theory of plasmon-enhanced high-order harmonic generation in the vicinity of metal nanostructures in noble gases.

2232479100. J. (2006) Second harmonic generation from a nanopatterned isotropic nonlinear material. 1021/nl0604457. F. (2011) Generation of isolated attosecond extreme ultraviolet pulses employing nanoplasmonic field enhancement: optimization of coupled ellipsoids. New J. , 13 (7), 073010. P. (2011) Numerical simulation of attosecond nanoplasmonic streaking. New J. , 13 (8), 083003. , and Manus, C. (1988) Multiple-harmonic conversion of 1064 nm radiation in rare gases. J. Phys. B: At. Mol. Opt. , 21 (3), L31.

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