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Dive into the research topics where Aleksandrs Marinins is active.

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Featured researches published by Aleksandrs Marinins.


Optical Materials Express | 2015

Electric field induced optical anisotropy of P3HT nanofibers in a liquid solution

Gleb Lobov; Yichen Zhao; Aleksandrs Marinins; Min Yan; Jiantong Li; Muhammet S. Toprak; Abhilash Sugunan; Lars Thylén; Lech Wosinski; Mikael Östling; Sergei Popov

The nanofiber morphology of regioregular Poly-3- hexylthiophene (P3HT) is a 1D crystalline structure organized by π - π stacking of the backbone chains. In this study, we report the impact of elect ...


Optical Materials Express | 2017

Direct birefringence and transmission modulation via dynamic alignment of P3HT nanofibers in an advanced opto-fluidic component

Gleb Lobov; Aleksandrs Marinins; Sebastian Etcheverry; Yichen Zhao; Elena Vasileva; Abhilash Sugunan; Fredrik Laurell; Lars Thylén; Lech Wosinski; Mikael Östling; Muhammet S. Toprak; Sergei Popov

Poly-3-hexylthiophene (P3HT) nanofibers are semiconducting high-aspect ratio nanostructures with anisotropic absorption and birefringence properties found at different regions of the optical spectr ...


IEEE Photonics Technology Letters | 2016

Air-Suspended SU-8 Strip Waveguides With High Refractive Index Contrast

Aleksandrs Marinins; Nicolas Knudde; Sergei Popov

Integrated polymer photonics is efficient and cheap solution for many applications, such as optical communications and sensors. Waveguides are basic elements of photonic integrated circuits, and their performance directly influences optical circuit efficiency. However, it is a challenge to develop small footprint polymer waveguides with reasonable losses due to low refractive index comparing to cladding. In this letter, we present free-standing SU-8 waveguides with high refractive index contrast. SiO2 cladding is selectively etched, leaving only air as a cladding material; waveguides are supported by thin pillars. Removal of SiO2 cladding eliminates light leakage to substrate and provides better light confinement. Straight and bending SU-8 waveguides are numerically simulated and experimentally verified at λ = 1550 nm. We also report reduced propagation and bending losses in discussed waveguides.


Asia Communications and Photonics Conference 2016 (2016), paper AF1I.6 | 2016

Luminescent Silicon Nanocrystals as Downconverters for Photovoltaic and Lighting Applications

Ilya Sychugov; Fatemeh Sangghaleh; Federico Pevere; Aleksandrs Marinins; Zhenyu Yang; Jonathan G. C. Veinot; Jan Linnros

Nanocrystals offer new functionalities for optoelectronics. Ensemble and single-dot measurements of chemically-synthesized silicon nanocrystals revealed high quantum yield, narrow homogeneous linewidth, and large Stokes shift, confirming application feasibility for these non-toxic and abundant material nanoparticles.


ACS Photonics | 2016

Photostable Polymer/Si Nanocrystal Bulk Hybrids with Tunable Photoluminescence

Aleksandrs Marinins; Zhenyu Yang; Hongzheng Chen; Jan Linnros; Jonathan G. C. Veinot; Sergei Popov; Ilya Sychugov


ACS Applied Materials & Interfaces | 2017

Light-Converting Polymer/Si Nanocrystal Composites with Stable 60–70% Quantum Efficiency and Their Glass Laminates

Aleksandrs Marinins; Reza Zandi Shafagh; Wouter van der Wijngaart; Tommy Haraldsson; Jan Linnros; Jonathan G. C. Veinot; Sergei Popov; Ilya Sychugov


Macromolecular Chemistry and Physics | 2016

Size Impact of Ordered P3HT Nanofibers on Optical Anisotropy

Gleb Lobov; Yichen Zhao; Aleksandrs Marinins; Min Yan; Jiantong Li; Abhilash Sugunan; Lars Thylén; Lech Wosinski; Mikael Östling; Muhammet S. Toprak; Sergei Popov


Advanced Optical Materials | 2016

Dynamic Manipulation of Optical Anisotropy of Suspended Poly‐3‐hexylthiophene Nanofibers

Gleb Lobov; Yichen Zhao; Aleksandrs Marinins; Min Yan; Jiantong Li; Abhilash Sugunan; Lars Thylén; Lech Wosinski; Mikael Östling; Muhammet S. Toprak; Sergei Popov


Physical Review B | 2016

Optical properties of silicon nanocrystals covered by periodic array of gold nanowires

Sergey A. Dyakov; D. M. Zhigunov; Aleksandrs Marinins; Maxim R. Shcherbakov; Andrey A. Fedyanin; A. S. Vorontsov; P. K. Kashkarov; Sergei Popov; Min Qiu; Margit Zacharias; S.G. Tikhodeev; N. A. Gippius


IEEE Photonics Technology Letters | 2018

Thermal reflow engineered cylindrical polymer waveguides for optical interconnects

Aleksandrs Marinins; Oskars Ozolins; Xiaodan Pang; Aleksejs Udalcovs; Jaime Rodrigo Navarro; Aditya Kakkar; Richard Schatz; Gunnar Jacobsen; Sergei Popov

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Sergei Popov

Royal Institute of Technology

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Muhammet S. Toprak

Royal Institute of Technology

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Gleb Lobov

Royal Institute of Technology

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Mikael Östling

Royal Institute of Technology

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Yichen Zhao

Royal Institute of Technology

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Abhilash Sugunan

Royal Institute of Technology

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Lars Thylén

Royal Institute of Technology

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Lech Wosinski

Royal Institute of Technology

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Min Yan

Royal Institute of Technology

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Jiantong Li

Royal Institute of Technology

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