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Diego R. da Costa Condensed matter physicist
ENPT
Theoretical condensed matter physics · 2D materials · Semiconductors

Diego Rabelo da Costa

Electrons, excitons and plasmons in two-dimensional materials: graphene, phosphorene, flat-band lattices and moiré heterostructures.

Adjunct Professor at the Department of Physics of the Federal University of Ceará, CNPq Research Productivity Fellow, and currently Director of the Internal Control, Ombudsman and Communication Office (ASCOI) at the Ceará State Research Foundation (FUNCAP).

90
peer-reviewed articles
3,100+
citations
24
h-index
48
students supervised
131
examination boards
Google Scholar · Oct 2026
Universidade Federal do Ceará Departamento de Física — UFC FUNCAP CNPq
Diego Rabelo da Costa
Department of Physics · Federal University of Ceará (UFC)Condensed Matter Theory Group (GTMC)
About

Profile

I am a theoretical condensed matter physicist working on the electronic, transport, optical and magnetic properties of two-dimensional materials and semiconductor nanostructures. I hold a bachelor's (2009), a master's (2011) and a joint PhD in Physics (2014) from the Federal University of Ceará (UFC) and the University of Antwerp, where I spent one year as a joint-PhD student with Prof. François M. Peeters. After postdoctoral positions at UFC (PDJ/CNPq and PNPD/CAPES, 2014–2018) and a joint Research Scholar position at the University of Minnesota (Prof. Tony Low) and Hunan University (Prof. Chujun Zhao) in 2018–2019, I joined the Department of Physics of UFC as Adjunct Professor in February 2019, where I am a member of the Condensed Matter Theory Group (GTMC) and a CNPq Research Productivity Fellow (PQ-2).

My research combines tight-binding and continuum models to describe quantum confinement, quantum transport, plasmonics and excitonic physics in graphene and its multilayers, phosphorene, transition-metal dichalcogenides, flat-band lattices (Lieb, kagome and α-T3) and twisted (moiré) heterostructures. Many of these works are developed with students of the Graduate Program in Physics at UFC and with collaborators in Brazil (ITA, UFMT, UnB, IFPI, UESPI, Mackenzie), Belgium (University of Antwerp), the United States (University of Minnesota, UC Santa Cruz), China (Hunan University) and the United Kingdom (University of Manchester).

Since February 2025 I have been seconded from UFC to the Ceará State Research Foundation (FUNCAP), first as Manager of the Office for Analysis and Evaluation of Studies (GERAE), then as Special Advisor to the Presidency, and since May 2026 as Director of the Internal Control, Ombudsman and Social Communication Office (ASCOI), also serving as the Foundation's Ombudsman.

Affiliations & institutions

Universidade Federal do Ceará Departamento de Física — UFC FUNCAP University of Antwerp University of Minnesota Hunan University CNPq CAPES
Career

Positions

Academic and management positions, newest first. Since February 2025 I have been seconded from UFC to the Ceará State Research Foundation (FUNCAP), where I have held three successive leadership positions.

May 2026 – present
Management

Director of the Internal Control, Ombudsman and Social Communication Office (ASCOI)

FUNCAP — Ceará State Research Foundation

Management and advisory position (symbol DNS-2), appointed on 20 May 2026 (DOE-CE of 10 June 2026). Also designated FUNCAP's Ombudsman on 19 June 2026 (Portaria 0031/2026).

Oct 2025 – May 2026
Management

Special Advisor to the Presidency

FUNCAP — Ceará State Research Foundation

Management and advisory position (symbol DNS-2), from 1 October 2025 to 20 May 2026.

Feb 2025 – Oct 2025
Management

Manager of the Office for Analysis and Evaluation of Studies (GERAE)

FUNCAP — Ceará State Research Foundation

Management position (symbol DNS-3), from 3 February 2025 (DOE-CE of 5 February 2025), on secondment from UFC at the request of the Governor of Ceará (Ofício GG 216/2024).

Feb 2019 – present
Academic

Adjunct Professor

Federal University of Ceará (UFC) — Department of Physics

Faculty member of the Department of Physics and of the Graduate Program in Physics (CAPES grade 7); researcher at the Condensed Matter Theory Group (GTMC). CNPq Research Productivity Fellow (PQ-2) since 2019. Approved in the public competition Edital 102/2018.

May 2018 – Jan 2019
Postdoc

Research Scholar — joint postdoctoral position

University of Minnesota (USA) & Hunan University (China)

Bilateral postdoctoral agreement between Prof. Tony Low's group (Department of Electrical & Computer Engineering, UMN) and Prof. Chujun Zhao's group (School of Physics & Electronics, HNU, Changsha): one third of the time on UMN projects and two thirds on optoelectronics projects with HNU.

Dec 2014 – Jan 2018
Postdoc

Postdoctoral researcher (PDJ/CNPq 2014–2015; PNPD/CAPES 2015–2018)

Federal University of Ceará (UFC) — Department of Physics

Research stays as visiting researcher at the University of Antwerp (two visits in 2015, ≈5 months, with F. M. Peeters and M. Zarenia) and at the University of Minnesota (2016 and 2017, with Tony Low); scientific visit and invited lecture at Hunan University (July 2018).

Sep 2014 – Dec 2014
Teaching

Teaching assistant

Federal University of Ceará (UFC)

Undergraduate physics courses for Chemistry students, including theoretical classes.

Sep 2013 – Aug 2014
PhD

Joint-PhD student (CAPES sandwich fellowship)

University of Antwerp (Belgium) — Condensed Matter Theory group

One-year stay under the supervision of Prof. François M. Peeters, leading to the joint PhD degree UFC–University of Antwerp.

Referee for Physical Review B, Journal of Physics: Condensed Matter, New Journal of Physics, European Physical Journal Plus, Superlattices and Microstructures, Journal of Computational Electronics, Solid State Communications.

Themes

Research

I model electronic, transport, optical and magnetic properties of nanostructured and two-dimensional systems, combining tight-binding and continuum (Dirac, k·p) descriptions with wave-packet dynamics, transfer-matrix and Landauer–Büttiker transport, and many-body approaches for excitons and trions.

01

Graphene nanostructures

Energy levels, magnetic-field effects, vortices and persistent currents in quantum dots and rings of monolayer, bilayer and ABC-stacked trilayer graphene; edge, strain and substrate effects in nanoribbons; carbon nanotubes. Tight-binding results are confronted with simplified Dirac models to establish which boundary conditions and interfaces control the spectra.

See publications (33) →
02

Phosphorene & anisotropic 2D materials

From multilayer tight-binding models to continuum descriptions of black phosphorus: boundary conditions for nanoribbons, Coulomb blockade and exciton fine structure in quantum dots, wave-packet dynamics, Y-junctions, Andreev reflection, impurity collapse and thermoelectric transport in anisotropic media.

See publications (12) →
03

Flat-band lattices: Lieb, kagome and α-T3

Electronic structure, strain engineering, symmetry analysis, topological phase transitions, tunneling, chiral states and thermodynamic properties of the Lieb–kagome interpolation and of α-T3 lattices, including nanoribbons, multilayers and superlattices.

See publications (11) →
04

Moiré heterostructures & excitons

Twisted bilayer graphene quantum dots and rings, magnetism in twisted flakes, and the zitterbewegung and elliptical-orbit dynamics of moiré excitons in twisted transition-metal-dichalcogenide heterobilayers. Excitons and trions in 2D semiconductors (Stark shift, dark states, Faddeev-equation trions, double-monolayer heterostructures).

See publications (14) →
05

Quantum transport & valleytronics

Valley filters based on electrostatic potentials, strain-induced snake states and substrate-induced mass; electron collimation and steering, p–n junctions and Veselago lensing, current switching in Y-junctions, electron diffraction in anisotropic media. Methods: split-operator wave-packet dynamics, transfer matrix and Landauer–Büttiker (Kwant) transport.

See publications (20) →
06

Plasmonics, optics & nonequilibrium magnetism

Channel plasmons in graphene, nonlocal electrodynamics of anisotropic magnetoplasmons, double-resonant second-harmonic generation through band nesting, terahertz photocurrents; and, in collaboration with UFMT, phase transitions of driven Ising, Heisenberg and Blume–Capel systems with competing dynamics.

See publications (4) →

Toolbox

Tight-binding models (first and second quantization)Continuum Dirac and k·p HamiltoniansSplit-operator wave-packet dynamicsTransfer-matrix and Landauer–Büttiker transport (Kwant)Band unfolding and strain engineeringFew-body methods for excitons and trionsMonte Carlo simulations of magnetic systemsDFT + Wannier interfaces (with collaborators)

Main collaborations

Articles by research theme

Peer-reviewed articles and preprints; a paper that spans two themes is counted in both.

Data table
ThemePublications
Graphene & carbon nanostructures33
2D semiconductors & heterostructures22
Quantum transport & valleytronics20
Moiré, twistronics & excitons14
Phosphorene & anisotropic 2D materials12
Flat-band lattices: Lieb, kagome, α-T311
Statistical physics & magnetism8
Methods & physics education5
Plasmonics & optics4
Interdisciplinary2
Peer-reviewed

Publications

Journal articles and preprints, newest first. Filter by year, theme or type, open the DOI, or copy a BibTeX entry.

2026
2025
2024
2023
2022
2021
2020
2020 Review

Bandgap engineering of two-dimensional semiconductor materials

A. Chaves, J. G. Azadani, Hussain Alsalman, D. R. da Costa, R. Frisenda, A. J. Chaves, Seung Hyun Song, Y. D. Kim, Daowei He, Jiadong Zhou, A. Castellanos-Gomez, F. M. Peeters, Zheng Liu, C. L. Hinkle, Sang-Hyun Oh, Peide D. Ye, Steven J. Koester, Young Hee Lee, Ph. Avouris, Xinran Wang, Tony Low

npj 2D Materials and Applications · 4 (2020) · 1275 citations

DOI
2019
2019 Article

Wave-packet dynamics in multilayer phosphorene

S. M. Cunha, D. R. da Costa, G. O. de Sousa, Andrey Chaves, J. Milton Pereira, G. A. Farias

Physical Review B · 99, 235424 (2019) · 33 citations

DOI
2018
2018 Article

Structural analysis, molecular docking and molecular dynamics of an edematogenic lectin from Centrolobium microchaete seeds

Antonio Hadson Bastos Neco, Vanir Reis Pinto-Junior, David Alencar Araripe, Mayara Queiroz Santiago, Vinicius Jose Silva Osterne, Claudia Figueiredo Lossio, Clareane Avelino Simplicio Nobre, Messias Vital Oliveira, Mayara Torquato Lima Silva, Maria Gleiciane Queiroz Martins, Joao Batista Cajazeiras, Gabriela Fernandes Oliveira Marques, D. R. da Costa, Kyria Santiago Nascimento, Ana Maria Sampaio Assreuy, Benildo Sousa Cavada

International Journal of Biological Macromolecules · 117, 124-133 (2018) · 13 citations

DOI
2017
2016
2015
2014
2012
Funded research & extension

Projects

Research projects and grants in which I participate as coordinator or team member.

Team memberOngoing · 2022 – 2025

Multiscale approach to optical, electronic and transport properties of two-dimensional semiconductors and their heterostructures

From DFT to Wannier tight-binding Hamiltonians, wave-packet transport (split-operator) and k·p continuum models for excitons, trions and nonlinear optics in 2D semiconductors; six co-supervised PhD students and four master students across the institutions.

Coordinator
Andrey Chaves
Funding
CNPq/MCTI/FNDCT Universal Call 18/2021, Track B (Process 423423/2021-5) — R$ 195,000
Institutions
UFC · ITA · UFMT
Team memberOngoing · 2022 – 2026

Design of two-dimensional heterostructures for high-efficiency solar cells

Excitonic properties of transition-metal-dichalcogenide heterostructures and alloys for third-generation photovoltaics, combining DFT, tight-binding, GW/BSE and effective Hamiltonians with experimental fabrication and characterization.

Coordinator
Gil de Aquino Farias
Funding
CNPq/MCTI Call 25/2022, Line 2 (Process 408144/2022-0) — R$ 793,300
Institutions
UFC · UnB · ITA · UFMT · LNLS
CoordinatorOngoing · 2023 –

Topological flat bands and Dirac points in multilayers of 2D Archimedean lattices

Tight-binding band structures of the eleven 2D Archimedean lattices and their multilayers, including perpendicular electric and magnetic fields, spin–orbit coupling and different stacking alignments, searching for type-I and type-II Dirac fermions and flat bands.

Coordinator
Diego R. da Costa
Funding
Undergraduate research project (UFC)
Institutions
UFC
CoordinatorOngoing · 2019 –

Optoelectronic and transport properties of two-dimensional materials

Theoretical studies of multilayer graphene and 2D semiconductor nanostructures using tight-binding, continuum, Landauer–Büttiker and split-operator techniques, proposing new devices and supporting the interpretation of experiments.

Coordinator
Diego R. da Costa
Funding
CNPq Research Productivity Fellowship (PQ-2)
Institutions
UFC · University of Antwerp · University of Minnesota · UnB
CoordinatorOngoing · 2019 –

Transport properties of multilayer black phosphorus

Theoretical and computational modelling of transport in nanostructured multilayer phosphorene, a highly anisotropic 2D semiconductor with a layer-tunable gap.

Coordinator
Diego R. da Costa
Funding
CNPq undergraduate research fellowships
Institutions
UFC
Team memberOngoing · 2020 –

From condensed matter to statistical physics: proposals in energy, sensors and nuclear physics

ITA–UFC cooperation on electronic and optical properties of 2D materials for photosensors, radar-absorbing materials, photovoltaics and space chemistry.

Coordinator
ITA (Department of Physics)
Funding
CNPq financial support
Institutions
ITA · UFC · CBPF
CoordinatorOngoing · 2024 –

Book club “Leitura com Ciência”: fostering reading through popular-science books

An extension project of the Departments of Physics and Chemistry and the UFC Analytical Center that promotes reading and scientific debate through systematic reading of popular-science books on materials, open to high-school and university students, teachers and the community.

Coordinator
Diego R. da Costa
Funding
University extension project (UFC)
Institutions
UFC — Centro de Ciências
Teaching

Teaching & supervision

Courses taught at UFC, video lectures, and the students I have supervised or co-supervised.

Courses

Undergraduate · 2019 –Fundamental Physics for Engineering (annual course)Computer, Electrical and Teleinformatics Engineering
Undergraduate · 2019 –Experimental Physics for EngineeringComputer, Teleinformatics, Energy & Environment and Metallurgical Engineering
Graduate · 2019Advanced Topics IIGraduate Program in Physics (UFC)
Graduate · 2020 –Topics in Theoretical Physics II: electronic transport in mesoscopic systemsGraduate Program in Physics (UFC)

Video lectures

Supervision

  • 2026Denilson Morais da Silva · Postdoc · supervisor · Universidade Federal de Alagoas
    Excitações coletivas em nanoestruturas semicondutoras e materiais bidimensionais
  • 2025Gabriel Araújo de Oliveira · MSc · co-advisor
  • 2024Temerson Fernando Oliveira Lara · PhD · advisor
  • 2024Tiago da Silva Costa · MSc · co-advisor
  • 2023Brehmer Braga Bernardo · PhD · advisor
  • 2023Emília de Sousa Uchôa · PhD · advisor
  • 2023Francisco Lucas Santos Oliveira · PhD · advisor
  • 2023Macário Vitório Mota Rodrigues · PhD · co-advisor
  • 2023Sergio Levy Nobre dos Santos · PhD · advisor
  • 2022Jovaine Rubstein Oliveira da Silva Filho · PhD · advisor
  • 2022Pedro Leinos Falcão Cunha · Undergraduate research
    Bilhar bidimensional anelar anisotrópico
  • 2021Ismael da Graça Albuquerque · PhD · advisor
  • 2020Michel Rodrigues Andrade · PhD · advisor
    Propriedades Plasmônicas em Materiais Bidimensionais

Names and titles as registered in the Lattes CV.

131

Examination boards

Member of 131 examination committees: 29 PhD theses, 36 master dissertations, 43 qualifying exams, 20 undergraduate monographs and 3 other juries.

41

Scientific events

41 participations in scientific meetings (including 8 invited talks) and member of the organizing committee of 6 events, among them the Brazilian Workshop on Semiconductor Physics (2019, 2022, 2024) and the Brazilian Physical Society Autumn Meetings (2019, 2024).

YouTube

Videos & talks

Lecture series and seminars from my YouTube channel, grouped by playlist, plus recorded talks hosted on other channels. 172 videos on the channel. Open the channel →

Solved problems from Halliday & Resnick (Fundamentals of Physics, vol. 1) and Moysés Nussenzveig, recorded for the Fundamental Physics for Engineering course at UFC.

6:11
Solução da Questão 08 - Cap. 01 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
7:39
Solução da Questão 07 - Cap. 1 - Vol. 1 - Moysés Nussenzveig
6:47
Vídeoaula-exercício com solução da Questão 17 da Lista 01
5:33
Solução da Questão 42 - Cap. 01 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
5:51
Solução da Questão 09 - Cap. 01 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
8:42
Solução da Questão 51 - Cap. 01 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
14:39
Solução da Questão 19 - Cap. 01 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
11:18
Vídeoaula-exercício com solução da Questão 18 da Lista 01
8:44
Vídeoaula-exercício com solução da Questão 19 da Lista 01
11:57
Vídeoaula-exercício com solução da Questão 20 da Lista 01
9:52
Solução da Questão 02 - Cap. 1 - Vol. 1 - Moysés Nussenzveig
14:22
Solução da Questão 01 - Cap. 1 - Vol. 1 - Moysés Nussenzveig
15:28
Solução da Questão 30 - Cap. 01 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
8:57
Solução da Questão 45 - Cap. 01 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
17:54
Solução da Questão 17 - Cap. 02 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
9:33
Solução da Questão 08 - Cap. 9 - Vol. 1 - Moysés Nussenzveig
9:44
Solução da Questão 12 - Cap. 8 - Vol. 1 - Moysés Nussenzveig
7:31
Solução da Questão 10 - Cap. 8 - Vol. 1 - Moysés Nussenzveig
12:44
Solução da Questão 06 - Cap. 8 - Vol. 1 - Moysés Nussenzveig
9:52
Solução da Questão 01 - Cap. 8 - Vol. 1 - Moysés Nussenzveig
20:15
Solução da Questão 08 - Cap. 6 - Vol. 1 - Moysés Nussenzveig
11:22
Solução da Questão 06 - Cap. 6 - Vol. 1 - Moysés Nussenzveig
12:01
Solução da Questão 05 - Cap. 6 - Vol. 1 - Moysés Nussenzveig
13:54
Solução da Questão 19 - Cap. 8 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
15:05
Solução da Questão 13 - Cap. 6 - Vol. 1 - Moysés Nussenzveig
9:01
Solução da Questão 12 - Cap. 6 - Vol. 1 - Moysés Nussenzveig
11:42
Solução da Questão 63 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
10:31
Solução da Questão 31 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
8:07
Solução da Questão 42 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
5:55
Solução da Questão 41 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
8:23
Solução da Questão 56 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
6:11
Solução da Questão 50 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
14:15
Solução da Questão 64 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
12:44
Solução da Questão 20 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
19:36
Solução da Questão 25 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
10:10
Solução da Questão 21 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
7:39
Solução da Questão 16 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
8:44
Solução da Questão 15 - Cap. 7 - Vol. 1 - Halliday & Resnick - Fundamentos de Física
12:26
Solução da Questão 10 - Cap. 6 - Vol. 1 - Moysés Nussenzveig
32:08
Solução da Questão 07 - Cap. 6 - Vol. 1 - Moysés Nussenzveig
16:20
Solução da Questão 03 - Cap. 6 - Vol. 1 - Moysés Nussenzveig
6:22
Solução da questão 17 da Lista 6 - Parte I (Lista de exercícios sobre Aplicações das Leis de Newton)
8:22
Solução da questão 16 da Lista 6 - Parte I (Lista de exercícios sobre Aplicações das Leis de Newton)
7:20
Solução da questão 8 da Lista 6 - Parte I (Lista de exercícios sobre Aplicações das Leis de Newton)
12:50
Solução da questão 6 da Lista 6 - Parte I (Lista de exercícios sobre Aplicações das Leis de Newton)
19:33
Solução de exercício sobre Aplicações das Leis de Newton (Questão 15 - Lista 06 - Parte II)
10:44
Solução de exercício sobre Aplicações das Leis de Newton (Questão 26 - Lista 06 - Parte II)
8:58
Solução de Exercício sobre Vetores
7:15
Solução de Exercício sobre Vetores
9:17
Solução de Exercício sobre Vetores
7:02
Solução de Exercício sobre Vetores
15:27
Solução de Exercício sobre Vetores
22:38
"Supercurrent and Andreev edge states in the quantum Hall regime" by Gleb Finkelstein
1:05:47
Medições
13:48
Solução da Questão 07 - Cap. 3 - Vol. 1 - Moyses Nussenzveig
15:48
Solução da Questão 08 - Cap. 3 - Vol. 1 - Moyses Nussenzveig
18:06
Solução da Questão 09 - Cap. 3 - Vol. 1 - Moyses Nussenzveig
19:33
Solução da Questão 15 - Cap. 3 - Vol. 1 - Moyses Nussenzveig
11:37
Solução da Questão 67 - Cap. 4 - Vol. 1 - Resnick & Halliday
14:56
Solução da Questão 20 - Cap. 4 - Vol. 1 - Resnick & Halliday
30:37
Videoaula-conteúdo sobre Movimento uniformemente acelerado (Cap. 4: Movimento 2D e 3D)
1:00:06
Videoaula-conteúdo sobre Movimento Balístico (Cap. 4: Movimento 2D e 3D)
19:10
Solução da Questão 48 - Cap. 4 - Vol. 1 - Resnick & Halliday
19:14
Solução da Questão 68 - Cap. 4 - Vol. 1 - Resnick & Halliday
9:23
Solução da Questão 20 - Cap. 3 - Vol. 1 - Moyses Nussenzveig
9:40
Solução da Questão 65 - Cap. 4 - Vol. 1 - Resnick & Halliday
1:26:26
Videoaula-conteúdo sobre Movimento Circular Uniforme (Cap. 4: Movimento 2D e 3D)
25:02
Videoaula-conteúdo sobre Movimento Relativo (Cap. 4: Movimento 2D e 3D)
10:21
Solução da Questão 70 - Cap. 4 - Vol. 1 - Resnick & Halliday
8:48
Solução da Questão 71 - Cap. 4 - Vol. 1 - Resnick & Halliday

Open this playlist on YouTube →

Conference talks & invited lectures · 29 · Lattes

  • 2024Confinement and transport properties of moiré excitons in twisted van der Waals hetero-bilayers invited
    21st Brazilian Workshop on Semiconductor Physics (BWSP) · Campinas
  • 2024Confinement and wavepacket dynamics of moiré excitons in twisted van der Waals hetero-bilayers
    Brazilian Physics Society Autumn Meeting · Florianópolis
  • 2024Materiais 2D: Propriedades e Aplicações em novas Tecnologias invited
    II Encontro de Física do Delta · Parnaíba - Piauí
  • 2024Theoretical tools for quantum transport in 2D Materials: The split-operator technique and the transfer matrix method invited
    Semana da Física 2024 · Fortaleza
  • 2020Chladni Figures in confined Dirac Fermions
    Encontro de Outono da Sociedade Brasileira de Física 2020 · Online
  • 2020Técnica split-operator em sistemas de baixa dimensionalidade
    Seminários do Programa de Pós-graduação em Física da Universidade Federal do Mato Grosso · Cuiabá
  • 2019Novos materiais bidimensionais: uma visão geral invited
    I Semana da Física da UNILAB · Acarape
  • 2019Strong Band-to-Band Tunneling Anisotropy in Multilayer Phosphorene p-n Junction
    19th Brazilian Workshop on Semiconductor Physics · Fortaleza
  • 2019The split-operator technique in 2D materials invited
    2D Materials: From Fundamentals to Spintronics · Natal
  • 2019Técnica split-operator em sistemas de baixa dimensionalidade invited
    XIII Encontro de Física do ITA · São José dos Campos
  • 2019Visualizing Gate-tunable Nanoscale Chladni Figures with Dirac Fermions
    19th Brazilian Workshop on Semiconductor Physics · Fortaleza
  • 2017Boundary conditions for phosphorene nanoribbons in the continuum approach
    18th Brazilian Workshop on Semiconductor Physics · Maresias
  • 2017Propriedades Eletrônicas e de Transporte em Materiais Bidimensionais invited
    I Oficina de Física do Estado Sólido do Cariri - Prof. Josué Mendes Filho · Juazeiro do Norte
  • 2017Substrate effects on the exciton fine structure of black phosphorus quantum dots
    Nanophotonics of 2D materials - N2D 2017 · San Sebastián
  • 2016Valley filtering by electrostatic potentials in bilayer graphene and by using snake states in graphene nanoribbons invited
    Thermal And Electronic Transport In Nanostructures · Natal
  • 2015Monolayer-bilayer graphene quantum dots
    Graphene 2015 - Imaginenano 2015 · Bilbao
  • 2014Grafeno: a nova era do carbono invited
    Ciclo de palestras e minicursos - Diálogos para a formação de professores de ciências e matemática · Brejo Santo
  • 2014Magnetic field dependence of the energy levels in bilayer graphene nano-flakes
    Graphene Week · Gotemburgo
  • 2014Valley filtering by electrostatic potentials in bilayer graphene
    General Scientific Meeting of the Belgian Physical Society 2014 · Antuérpia
  • 2013Wave-packet scattering through a boundary monolayer and bilayer graphene
    XXXVI Encontro Nacional de Física da Matéria Condensada · Águas de Lindóia
  • 2012Energy spectra of graphene quantum rings: A comparison between the tight-binding and simplified Dirac models
    XXXV Encontro Nacional de Física da Matéria Condensada · Águas de LIndóia
  • 2012Wavepacket scattering on graphene edges in the presence of a (pseudo) magnetic field
    XXX Encontro de Físicos do Norte e Nordeste · Salvador
  • 2011Randomness effects on the energy spectrum of superlattice quantum rings
    XXIX Encontro de Físicos do Norte e Nordeste · Mossoró
  • 2011Roughness effects on the excitonic properties of semiconductor quantum rings
    XV Brazilian Workshop on Semiconductor Physics · Juiz de Fora
  • 2010Poço quântico simples e superredes em anéis quânticos ideais
    XXVIII Encontro de Físicos do Norte e Nordeste · Teresina
  • 2009Método tight-binding para pontos e anéis quânticos de grafeno
    XXVII Encontro de Físicos do Norte e Nordeste · Belém
  • 2009Poço quântico simples e superredes em anéis quânticos ideais
    XXVIII Encontro Universitário de Iniciação Científica · Fortaleza
  • 2008Efeitos de impurezas e campos elétricos sobre o espectro de energia de anéis quânticos
    XXVII Encontro Universitário de Iniciação Científica · Fortaleza
  • 2007Solução Numérica da Equação de Schroedinger para um potencial de Oscilador Harmônico Simples
    XXVI Encontro Universitário de Iniciação Científica · Fortaleza
Contact

Research conversations are welcome

For collaborations, seminars, student projects or scientific exchange, contact me by email or through the profiles below.

Alternative emaildiego.rabelo@ufc.br
Mobile+55 85 98801-7065 · +55 85 99139-2992
AffiliationDepartment of Physics · Federal University of Ceará (UFC)Condensed Matter Theory Group (GTMC)
AddressCampus do Pici, Mister Hull Avenue · 60455-760 Fortaleza, CE · Brazil