Carlos Marques

Professor Auxiliar

Perfil biográfico

Carlos Marques was born in Santa Maria da Feira, Portugal, in january 1984.
 
2023-present: Professor, Physics Departament, University of Aveiro, Portugal. Full member of CICECO.
 
2022-2023: Principal Investigator, CEEC/FCT, at i3N/Physics Department, University of Aveiro, Portugal
 
2020-2022: Assistant Investigator, CEEC/FCT, at i3N/Physics Department, University of Aveiro, Portugal

2018-2020: Researcher from DL57 Transitory Norm (i3N/Physics Department, University of Aveiro, Portugal.
 
2016-2018: Post-Doctoral fellowship, at IT-Aveiro, University of Aveiro, Portugal (FCT Grant holder (SFRH/BPD/109458/2015).
 
2014-2016: Marie Curie Individual Fellowship, at Aston University, Birmingham, UK, EC Grant holder (PIEF-GA-2013-628604), "Polymer Optical Sensing System Innovation Benefits Leadership Education (POSSIBLE)".
 
2010-2013: Ph.D Student (IT-Aveiro, University of Aveiro, Portugal, “Fiber Optic Components for Optical Communications and Sensors”.
 
2008-2010: Researcher at IT-Aveiro, University of Aveiro, Portugal.
 
2007-2008: Master in Physics Engineering (University of Aveiro, Portugal), "Advanced inscription of Bragg gratings in fiber optics".
 
2002-2007: Degree in Physics Engineering (University of Aveiro, Portugal)

Interesses científicos

Dispositivos óticos e estruturas inovadoras para deteção;

Ótica integrada e biossensores óticos;

Sistemas óticos de interrogação;

eSaúde;

Fotónica para UAVs, aviação e aeroespacial;

Aquisição de dados, análise preditiva e transmissão ótica de dados.

Docência

Lasers e Fotónica: https://www.ua.pt/pt/uc/7306  

Fotónica

Tecnologias Óticas: https://www.ua.pt/pt/uc/6750 

Tecnologias para Sistemas de Energia Espaciais: https://www.ua.pt/pt/uc/15535  

Sensores e Atuadores

Temas de Engenharia Física

Introdução à Engenharia Aeroespacial

Sistemas óticos do Espaço: https://www.ua.pt/pt/uc/15534  

Sensores e Dispositivos Aeroespaciais: https://www.ua.pt/pt/uc/17089  

Instrumentação Eletrónica para Física

Experimentação em Física

Mecânica

Mecânica e Oscilações

Colaboradores principais

  • Unidade de Processos Avançados de Fabrico – Compósitos, Pólo de Inovação em Engenharia de Polímeros (PIEP), Portugal
  • Hangtianguanxin Ltd, from AVIC (Aviation Industry Corporation), China
  • LiangDao GmbH, Germany
  • Redondo Optics, Inc, USA
  • Aston University, UK
  • Meggitt, UK
  • Airbus, UK
  • Instituto Tecnológico de Aeronáutica (ITA), Brazil
  • Qilu University of Technology (Shandong Academy of Sciences), China
  • EQS Global, Portugal
  • Vilnius Tech, Lithuania
  • Universidade Federal do Espírito Santo, Brazil
  • Liaocheng University, China
  • Nazarbayev University, Kazakhstan
  • Mons University, Belgium
  • Université Côte d’Azur, France
  • Fotonik Danmarks Tekniske Universitet (DTU), Denmark
  • Indian Institute of Technology Delhi, India
  • Cyprus University of Technology, Cyprus
  • Lumoscribe LTD, Cyprus
  • Fibersight, Portugal
  • VSB-TUO, Chequia
  • K L Deemed to University, India
  • HBK, Portugal
  • PicAdvanced, Portugal
  • Indian Institute of Technology Bhubaneswar, India
  • etc

Supervisões em Curso

Publicações

Relative humidity sensing using micro-cavities produced by the catastrophic fuse effect

Alberto N.; Tavares C.; Domingues M.F.; Correia S.F.H.; Marques C.; Antunes P.; Pinto J.L.; Ferreira R.A.S.; André P.S.
2016, Optical and Quantum Electronics, 48, 3.

Thermal effects on the photoelastic coefficient of polymer optical fibers

Sophie A.; Patrick M.; Heidi O.; Thomas G.; Hugo T.; Marques C.A.F.; Webb D.J.; Peng G.-D.; Mergo P.; Francis B.
2016, Optics Letters, 41, 11.

Recycling optical fibers for sensing

André P.; Domingues F.; Alberto N.; Marques C.; Antunes P.
2016, Proceedings of SPIE - The International Society for Optical Engineering, 9899.

Yellow laser light generation by frequency doubling of the output from a master oscillator fiber power amplifier system

Ryser M.; Marques C.; Nogueira R.; Romano V.
2015, Proceedings of SPIE - The International Society for Optical Engineering, 9344.

Highly sensitive liquid level sensor using a polymer optical Bragg grating for industrial applications

Marques C.A.F.; Peng G.-D.; Webb D.J.
2015, Conference on Lasers and Electro-Optics Europe - Technical Digest, 2015-August.

High performance liquid level monitoring system based on polymer fiber Bragg gratings embedded in silicone rubber diaphragms

Marques C.A.F.; Peng G.-D.; Webb D.J.
2015, Proceedings of SPIE - The International Society for Optical Engineering, 9507.

Fiber-optic liquid level monitoring system using microstructured polymer fiber Bragg grating array sensors: Performance analysis

Marquess C.A.F.; Pospori A.; Sáez-Rodríguez D.; Nielsen K.; Bang O.; Webb D.J.
2015, Proceedings of SPIE - The International Society for Optical Engineering, 9634.

Highly sensitive liquid level monitoring system utilizing polymer fiber Bragg gratings

Marques C.A.F.; Peng G.-D.; Webb D.J.
2015, Optics Express, 23, 5.

High performance liquid-level sensor based on mPOFBG for aircraft applications

Marques C.A.F.; Pospori A.; Saez-Rodriguez D.; Nielsen K.; Bang O.; Webb D.J.
2015, 2015 IEEE Avionics and Vehicle Fiber-Optics and Photonics Conference, AVFOP 2015.

Polarization effects in polymer FBGs: Study and use for transverse force sensing

Hu X.; Saez-Rodriguez D.; Marques C.; Bang O.; Webb D.J.; Mégret P.; Caucheteur C.
2015, Optics Express, 23, 4.

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