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Aleksandra Krajewska

Researcher at Military University of Technology in Warsaw

Publications -  66
Citations -  1834

Aleksandra Krajewska is an academic researcher from Military University of Technology in Warsaw. The author has contributed to research in topics: Graphene & Fiber laser. The author has an hindex of 21, co-authored 53 publications receiving 1448 citations. Previous affiliations of Aleksandra Krajewska include Polish Academy of Sciences.

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Production and processing of graphene and related materials

Claudia Backes, +148 more
TL;DR: In this article, the authors present an overview of the main techniques for production and processing of graphene and related materials (GRMs), as well as the key characterization procedures, adopting a 'hands-on' approach, providing practical details and procedures as derived from literature and from the authors' experience, in order to enable the reader to reproduce the results.
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Residual Metallic Contamination of Transferred Chemical Vapor Deposited Graphene

TL;DR: Graphene layers grown on copper foils by chemical vapor deposition and transferred to silicon wafers by wet etching and electrochemical delamination methods with respect to residual submonolayer metallic contaminations are investigated.
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Thulium-doped all-fiber laser mode-locked by CVD-graphene/PMMA saturable absorber

TL;DR: This is the shortest reported pulse duration achieved from a Tm-doped laser mode-locked by graphene saturable absorber and such cost-effective and stable fiber lasers might be considered as sources for mid-infrared spectroscopy and remote sensing.
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Sub-90 fs a stretched-pulse mode-locked fiber laser based on a graphene saturable absorber.

TL;DR: A stretched-pulse, mode-locked Er-doped fiber laser based on graphene saturable absorber (SA) is presented and chirped pulses were compressed outside the cavity to the 88 fs using a piece of standard single mode fiber.
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Multilayer graphene-based saturable absorbers with scalable modulation depth for mode-locked Er- and Tm-doped fiber lasers

TL;DR: In this paper, the authors demonstrate an experimental study on the influence of the parameters of a graphene-based saturable absorber (SA) on the performance of mode-locked Er- and Tm-doped fiber lasers.