Alfredo Daniel Sanchez, PhD.

Scientific background:

  • Physics
  • Optics
  • Nonlinear Optics
  • Nanomaterials (metal nanoparticles modeling, plasmonics)
  • Computational Modeling
  • Parallel Computing
  • Electromagnetism

Publication activity:

  • Publications in scientific journals: +20
  • Contributed lectures at conferences: 5
  • Citations: 207 (WoS)

The most significant publications:

2024

  • Performance studies on group-velocity-matched femtosecond optical parametric generation Pizzurro, S. et al. J. Opt. Soc. Am.B., 41, (12) E45-E51.
  • Mean-field equation for phase-modulated optical parametric oscillator. Sánchez, A. D. et al. Physical Review Research., 6 (1), 013263.
  • Cuda-Based Focused Gaussian Beams Second-Harmonic Generation Efficiency Calculator Sánchez, A. D. et al. Computer Physics Communications., 302, 109232.
  • Mean-field equation for phase-modulated optical parametric oscillator Sánchez, A. D. et al. Physical Review Research., 6 (1), 013263.

2023

  • CUDA-based optical parametric oscillator simulator. Sánchez, A. D. et al. Computer Physics Communications., 294, 108910.

2022

  • Immobilization of a simulated high-level waste in an yttrium aluminosilicate glass. Self-heating assessment. Lago, D. C. et al. Journal of the European Ceramic Society., 42(16), 7561-7569.
  • Ultrashort pulse generation from continuous-wave driven degenerate optical parametric oscillators Sánchez, A. D. et al. IEEE Journal of Selected Topics in Quantum Electronics., , 1-8.
  • Cesium immobilization in porous silica and 137Cs self-heating simulations. Lago, D. C. et al. Journal of Nuclear Materials., 565, 153697.
  • All-optical pulse-train generation through the temporal analogue of a laser Sparapani, A. et al. Optical Fiber Technology., 68, 102785.

2021

  • Simple model for the nonlinear optical response of dimer-doped waveguides. Sánchez, A. et al. J. Opt. Soc. Am. B, 38(1), 17-23.
  • Model for frequency-dependent nonlinear propagation in 2D-decorated nanowires. Linale, N. et al. IEEE J. Quantum Electron., 57(4), 1-8.

2020

  • Measuring self-steepening with the photon-conserving nonlinear Schrödinger equation. Linale, N. et al. Opt. Lett., 45(16), 4535-4538.
  • Equation for modeling two-photon absorption in nonlinear waveguides. Linale, N. et al. J. Opt. Soc. Am. B, 37(6), 1906-1910.
  • Modulation instability in waveguides doped with anisotropic nanoparticles. Sánchez, A. D. et al. Opt. Lett., 45(11), 3119-3122.
  • Modulation instability in waveguides with an arbitrary frequency-dependent nonlinear coefficient. Linale, N. et al. Lett., 45 (9), 2498-2501.
  • A photon-conserving generalized nonlinear Schrödinger equation for frequency-dependent nonlinearities. Bonetti, J. et al. J. Opt. Soc.Am. B., 37, 445-450.

2019

  • Modified nonlinear Schrödinger equation for frequency-dependent nonlinear profiles of arbitrary sign. Bonetti, J. et al. J. Opt. Soc.Am. B, 36(11), 3139–3144.
  • Simple method for estimating the fractional Raman contribution. Sánchez, A. D. et al. Opt. Lett., 44(3), 538–541.

2018

  • Anti-Stokes Raman gain enabled by modulation instability in mid-IR waveguides. Sánchez, A. D. et al. J. Opt. Soc. Am. B, 35(11), 2828–2832.
  • Tunable Raman gain in mid-IR waveguides. Sánchez, A. D. et al. J. Opt. Soc. Am.B, 35(1), 95–99.

2017

  • A geometrical view of scalar modulation instability in optical fibers Hernandez, S. M. et al. IEEE Photonics Journal. 9(5), 1-8.

2016

  • Plasmonic Photothermal Fluorescence Modulation for Homogeneous Biosensing. Pellegrotti, J. V. et al. ACS Sensors, 1(11), 1351–1357.

Study part: Profile subjects (basic mathematical base for scientist and engineering)

  • Linear Algebra
  • Calculus I and II

Education:

  • S c. + M. Sc.: Physicist, Universidad de Buenos Aires and CIBION (Centro de Investigaciones en BioNano Ciencias), Buenos Aires, Argentina, 2015. Thesis: Synthesis and Modeling of the Optical Properties of Gold Nanorods.
  • PhD: Doctorate in Engeneer, Universidad Nacional de Cuyo, San Carlos de Bariloche, Argentina. Thesis: Nonlinear effect in waveguides in the infrared region.

Work Experience:

  • Position title: Researcher, FunGlass– Centre for Functional and Surface Functionalized Glass, Alexandra Dubcek University of Trencin (January 2025- Present).
  • Position title: Researcher, ICFO – The Institute of Photonic Sciences (January 2021- December 2024).

Teaching:

Study part: Profile subjects (basic mathematical base for scientist and engineering)

  • Linear Algebra
  • Calculus I and II

Awards, scholarships and research stays:

  • PhD Scholarship by CONICET(Consejo Nacional de Investigaciones Ciéntificas y Técnicas): San Carlos de Bariloche, Argentina, April 2016.
  • Best Poster “NANOINTI”, Conference in Nanotechnoly at INTI (Insitituto Nacional de Tecnología Industrial), Buenos Aires, Argentina, June 2013.

Other activities:

  1. Reviewer in Optical Society of America, Optica Publishing Group (8 articles)
  2. Reviewer in Physical Review (2 articles)
Dr. Alfredo Daniel Sanchez
Dr. Alfredo Daniel Sanchez
Researcher
VILA department

E-mail: alfredo.sanchez@tnuni.sk
Tel.: +421 32 7400
Office: n.