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Irfan Bulu

Researcher at Harvard University

Publications -  102
Citations -  3711

Irfan Bulu is an academic researcher from Harvard University. The author has contributed to research in topics: Photonic crystal & Diamond. The author has an hindex of 32, co-authored 102 publications receiving 3509 citations. Previous affiliations of Irfan Bulu include Massachusetts Institute of Technology & Bilkent University.

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Negative refraction and focusing of electromagnetic waves by photonic crystals

TL;DR: In this article, the negative refraction and focusing effect of a metallodielectric photonic crystal was studied for aflat-lens with large incidence angles, and it was shown that by using the metallodelectric reflector, it is possible to obtain negative refractive index for large incidence angle.
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Analysis of ringing effects due to magnetic core materials in pulsed nuclear magnetic resonance circuits

TL;DR: In this article, the authors investigated and detailed analysis of ringing in a non-resonant pulsed nuclear magnetic resonance (NMR) circuit and discussed ways of controlling ringing by considering interrelationships between different contributing factors.
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Cavity formation in split ring resonators

TL;DR: In this paper, it was shown that it is possible to obtain a cavity structure by deformation of a unit cell of an split ring resonator (SRR) structure, and the authors presented the Q-factor of the cavity resonance as 192 for an SRR-based single cavity.
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Broadband Analysis of Response From Magnetic Cores Used in Inductive Sensors for Pulsed Nuclear Magnetic Resonance Applications

TL;DR: In this article, the authors identify the signal characteristics and minimize the interference due to the magnetic core material, which is a suitable core material for inductive sensors due to its lower signal amplitude and shorter decay time at each resonant frequency.
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Plasmonic resonators for enhanced diamond NV- center single photon sources

TL;DR: In this article, the authors proposed a novel source of non-classical light consisting of plasmonic aperture with single-crystal diamond containing a single Nitrogen-Vacancy (NV) color center.