activity
20072026
most citedA common model for superluminal propagation in absorbing atomic media and lossy metastructures

1 citations · 1 across the 6 of their papers we have counts for

collaborators

6 papers

physics.optics2026

Energy-efficient programmable integrated photonics via optimized Euler rotations

Pablo Martínez-Carrasco Romero, Andrés Macho-Ortíz, José Roberto Rausell-Campo +2

Programmable integrated photonics (PIP) has emerged as a powerful on-chip platform for optical signal processing and computing, enabling the implementation of reconfigurable N$\tim…

physics.optics2026

Noise in analog programmable-photonic computation

Raúl López-March, Andrés Macho-Ortiz, Francisco Javier Fraile-Peláez +1

Analog Programmable-Photonic Computation (APC) leverages programmable integrated photonics (PIP) to perform high-speed matrix operations using optical waves. However, the continuou…

physics.optics2025

Analog Programmable-Photonic Information

Andrés Macho Ortiz, Raúl López March, Pablo Martínez Carrasco Romero +2

The limitations of digital electronics in handling real-time matrix operations for emerging computational tasks - such as artificial intelligence, drug design, and medical imaging…

physics.optics2019

Electromagnetic Formalism of the Propagation and Amplification of Light

F. Javier Fraile-Pelaez, Andres Macho

In this work, we present a simplified but comprehensive derivation of all the key concepts and main results concerning light pulse propagation in dielectric media, including a brie…

physics.optics2008★ 1 cited

A common model for superluminal propagation in absorbing atomic media and lossy metastructures

P. Chamorro-Posada, F. J. Fraile-Pelaez

We analyse the superluminal propagation of narrow-band pulses at resonances in dissipative media. The output waveform is an attenuated, undistorted, time-advanced version of the in…

quant-ph2007

Waves, analytical signals, and some postulates of quantum theory

Miguel A. Muriel, F. Javier Fraile-Pelaez

In this paper we apply the formalism of the analytical signal theory to the Schrodinger wavefunction. Making use exclusively of the wave-particle duality and the principle of relat…