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My professional career began at the Polytechnic University of Madrid, where I studied Industrial Electronics and Automation Engineering. After completing these studies, I pursued a Master's in 'Electronic Systems' at the same university. Obtaining this degree allowed me to access doctoral studies. During the development of my doctoral thesis (PhD in Information and Communication Technologies: Materials and Devices), which was positively evaluated and awarded the distinction of 'Cum Laude,' I conducted various research projects that were published in prestigious scientific journals. These projects involved four years of research in the field of optics and photonics applied to telecommunication devices. As a researcher at the Polytechnic University of Madrid within the framework of my doctoral thesis, I participated in a wide range of activities, including the design of electronic devices, microfabrication processes in a cleanroom, student mentoring, supervision of undergraduate and master's thesis projects, testing and evaluation of devices, as well as data collection and publication. The scientific work presented during my doctoral thesis focused on the design, testing, and implementation of liquid crystal-based devices for optical communications. Among these works, publications in renowned journals such as Scientific Reports stand out. As part of my doctoral studies, I undertook research stays at the Military University of Warsaw (Poland) (one month) and Ghent University (Belgium) (three months), thereby obtaining international certification for my PhD. My scientific experience is complemented by experience in private entities within the technology sector, which contributed to the evolution of my professional career. For several years, I worked as a junior engineer in companies such as Airbus Space and Defense and Airbus Operations. After this stage in Spain, I began my postdoctoral career in Lisbon, Portugal, as part of the research team at INESC MN. In this new phase, I carry out tasks related to the energy transition, including the design of electronic devices for the use of magnetic current sensors (TMS technology) for power measurement in high-voltage lines and second-life batteries. These activities have significant social value, as they are highly relevant to fostering a more sustainable society. The technology developed throughout my research career has been published and disseminated in scientific journals and presented at conferences and other scientific events. My scientific work is currently complemented by the supervision of master's students, the evaluation and admission of new research team members, and the management and leadership of my research team in collaboration with my supervisors.
Identificação

Identificação pessoal

Nome completo
Mario García de Blas

Nomes de citação

  • Mario García-De-Blas

Identificadores de autor

Ciência ID
D717-51EC-B31D
ORCID iD
0000-0001-9382-2908

Idiomas

Idioma Conversação Leitura Escrita Compreensão Peer-review
Espanhol; Castelhano (Idioma materno)
Inglês Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1)
Português Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1) Utilizador proficiente (C1)
Formação
Grau Classificação
2019/04/01 - 2022/10/07
Concluído
PhD in Information and Comunication Technologies: Materials and Devices (Doctor)
Universidad Politécnica de Madrid, Espanha
"Tunable Diffractive Liquid Crystal Photonic Devices" (TESE/DISSERTAÇÃO)
Cum laude
2021/09/01 - 2022/07/01
Concluído
Master in Secundary Education (Master)
Universidad de la Rioja, Espanha
2017/09/01 - 2018/09/01
Concluído
Master in Electronic Systems Universidad (Master)
Universidad Politécnica de Madrid, Espanha
2010/09/01 - 2015/09/01
Concluído
Degree in Automation and Industrial Electronics Universidad (Licenciatura)
Universidad Politécnica de Madrid, Espanha
Percurso profissional

Ciência

Categoria Profissional
Instituição de acolhimento
Empregador
2023/05/02 - Atual Investigador (Investigação) INESC Microsistemas e Nanotecnologias, Portugal
INESC Microsistemas e Nanotecnologias, Portugal
2019/02/01 - 2022/08/30 Investigador (Investigação) Universidad Politécnica de Madrid, Espanha
Universidad Politécnica de Madrid, Espanha

Outras Carreiras

Categoria Profissional
Instituição de acolhimento
Empregador
2016/04/01 - 2017/04/01 Assistente Operacional (Assistente Operacional) Airbus Operations SAS, França
Projetos

Projeto

Designação Financiadores
2023/05/02 - Atual ATE Aliança para a Transição Energética | Plataforma para a Gestão e Operação de Redes Multimodais de Transporte
02/C05-i01.02/2022.PC644914747-00000023
Investigador
Em curso
2023/05/02 - Atual NGS - New Generation Storage
02/C05-i01.01/2022.PC644936001-00000045
Investigador
Em curso

Outro

Designação Financiadores
2021/12/01 - 2023/11/30 Lentes sintonizables de cristal líquido (I)-dispositivos de cristal líquido
0000-0000
Investigador
2019/11/01 - 2023/07/31 ARIADNE - ARTIFICIAL INTELLIGENCE AIDED D-BAND NETWORK FOR 5G LONG TERM EVOLUTION"
0000-0000
Investigador
2019/01/01 - 2023/04/30 "Sensores e instrumentación en tecnologías fotónicas 2" (Programa S2018/NMT-4326 SINFOTON2-CM)
0000-0000
Investigador
Concluído
2018/01/11 - 2021/01/10 Ayudas para la Realización de Doctorados Industriales en la Comunidad de Madrid
0000-0000
Investigador
Produções

Publicações

Artigo em revista
  1. Javier Pereiro García; M. García-De-Blas; Pablo de la Rosa del Val; M. A. Geday; X. Quintana; Manuel Caño-García. "Reconfigurable perfect vortex beam generator based on a liquid crystal spiral phase plate". Optics Express (2023): http://dx.doi.org/10.1364/oe.501796.
    10.1364/oe.501796
  2. Javier Pereiro-García; Mario García-de-Blas; Morten Andreas Geday; Xabier Quintana; Manuel Caño-García. "Flat variable liquid crystal diffractive spiral axicon enabling perfect vortex beams generation". Scientific Reports 13 1 (2023): http://dx.doi.org/10.1038/s41598-023-29164-0.
    10.1038/s41598-023-29164-0
  3. "High resolution 2D beam steerer made from cascaded 1D liquid crystal phase gratings". Scientific Reports 12 1 (2022): http://dx.doi.org/10.1038/s41598-022-09201-0.
    10.1038/s41598-022-09201-0
  4. Mario García de Blas; MORTEN ANDREAS GEDAY; JOSE MANUEL OTON SANCHEZ; Xabier Quintana Arregui. "Two-Dimensional Digital Beam Steering Based on Liquid Crystal Phase Gratings". Applied Sciences (2021): https://www.mdpi.com/2076-3417/11/8/3632.
    10.3390/app11083632
  5. "Polymer stabilized highly tilted antiferroelectric liquid crystals - the influence of monomer structure and phase sequence of base mixtures". Journal of Molecular Liquids 327 (2021): 114869-114869. https://www.sciencedirect.com/science/article/pii/S0167732220371117.
    https://doi.org/10.1016/j.molliq.2020.114869
Atividades

Tutoria

Tópico Nome do aluno
2021/10/26 - Atual Design, Simulation, Manufacturing and Characterization of a tunable Beam Steering device VERA ANDREU, SERGIO
Distinções

Título

2022 CUM LAUDE
Universidad Politécnica de Madrid, Espanha