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Aston Institute of Photonic Technologies (AiPT)
College of Engineering and Physical Sciences
Overview
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Network
Profiles
(30)
Research output
(3942)
Student theses
(45)
Prizes
(9)
Activities
(43)
Press/Media
(10)
Research output
Research output per year
1987
2012
2013
2014
2015
2016
2017
2018
2019
2021
2022
2024
1993
Article
1433
Conference publication
159
Conference article
77
Chapter
280
More
60
Unpublished Conference Paper
53
Abstract
41
Chapter (peer-reviewed)
23
Review article
18
Poster
14
Letter, comment/opinion or interview
11
Other
10
Other chapter contribution
9
Correction
7
Editorial
7
Patent
6
Special issue
4
Conference abstract
4
Preprint
3
Doctoral Thesis
3
Working paper
2
Book
1
Edited Book
1
Scholarly edition
1
Obituary
1
Other contribution
1
Master's Thesis
Research output per year
Research output per year
3 results
Publication Year, Title
(descending)
Publication Year, Title
(ascending)
Title
Type
Filter
Working paper
Search results
2019
On the rigorous justification of b-modulation method and inclusion of discrete eigenvalues
Shepelsky, D., Vasylchenkova, A.,
Prilepsky, J. E.
& Karpenko, I.,
2 Jul 2019
.
Research output
:
Preprint or Working paper
›
Working paper
Open Access
File
Modulation Method
100%
Discrete Eigenvalues
100%
Rigorous Justification
100%
Eigenvalue
100%
Optical Communications
50%
2018
Interference in edge-scattering from monocrystalline gold flakes
Boroviks, S., Wolff, C., Linnet, J., Yang, Y., Todisco, F., Roberts, A. S., Bozhevolnyi, S. I., Hecht, B. & Mortensen, N. A.,
5 Sept 2018
.
Research output
:
Preprint or Working paper
›
Working paper
File
Edge Scattering
100%
Monocrystalline Gold Flakes
100%
Surface Plasmon
100%
Chirality
100%
Face Centered Cubic Lattices
100%
Mie-excitons: understanding strong coupling in dielectric nanoparticles
Tserkezis, C., Gonçalves, P. A. D., Wolff, C., Todisco, F., Busch, K. & Mortensen, N. A.,
2 May 2018
.
Research output
:
Preprint or Working paper
›
Working paper
File
Exciton
100%
Strong Coupling
100%
Dielectric Nanoparticles
100%
Nanoparticle
100%
Dielectric Material
100%