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19982011
most citedGraphene Antidot Lattices - Designed Defects and Spin Qubits

541 citations · 3.2k across the 51 of their papers we have counts for

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Showing 2007 · physics.opticsShow all

8 papers · 2 filters

physics.optics200716 cited

Enhanced circular dichroism via slow-light in dispersive structured media

Jesper Pedersen, Niels Asger Mortensen

Circular dichroism (CD) is in widespread use as a means of determining enantiomeric excess. We show how slow-light phenomena in dispersive structured media allow for a reduction in…

physics.optics20074 cited

Slow-light enhanced optical detection in liquid-infiltrated photonic crystals

M. E. V. Pedersen, L. S. Rishoj, H. Steffensen +2

Slow-light enhanced optical detection in liquid-infiltrated photonic crystals is theoretically studied. Using a scattering-matrix approach and the Wigner-Smith delay time concept,…

physics.optics2007152 cited

Liquid-infiltrated photonic crystals - enhanced light-matter interactions for lab-on-a-chip applications

Niels Asger Mortensen, Sanshui Xiao, Jesper Pedersen

Optical techniques are finding widespread use in analytical chemistry for chemical and bio-chemical analysis. During the past decade, there has been an increasing emphasis on minia…

physics.optics200719 cited

Air-clad fibers: pump absorption assisted by chaotic wave dynamics?

Niels Asger Mortensen

Wave chaos is a concept which has already proved its practical usefulness in design of double-clad fibers for cladding-pumped fiber lasers and fiber amplifiers. In general, classic…

physics.optics200716 cited

Enhanced transmission through arrays of subwavelength holes in gold films coated by a finite dielectric layer

Sanshui Xiao, Niels Asger Mortensen, Min Qiu

Enhanced transmissions through a gold film with arrays of subwavelength holes are theoretically studied, employing the rigid full vectorial three dimensional finite difference time…

physics.optics2007147 cited

Slow-light enhancement of Beer-Lambert-Bouguer absorption

Niels Asger Mortensen, Sanshui Xiao

We theoretically show how slow light in an optofluidic environment facilitates enhanced light-matter interactions, by orders of magnitude. The proposed concept provides strong oppo…