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Updated: Nov 20, 2025

Fluorescence Imaging with One-nanometer Accuracy FIONA
Published on: September 26, 2014
The multi-photon induced Fano effect
K L Litvinenko1, Nguyen H Le2, B Redlich3
1Department of Physics, Advanced Technology Institute, University of Surrey, Guildford, GU2 7XH, UK. k.litvinenko@surrey.ac.uk.
Abstract:
The ordinary Fano effect occurs in many-electron atoms and requires an autoionizing state. With such a state, photo-ionization may proceed via pathways that interfere, and the characteristic asymmetric resonance structures appear in the continuum. Here we demonstrate that Fano structure may also be induced without need of auto-ionization, by dressing the continuum with an ordinary bound state in any atom by a coupling laser. Using multi-photon processes gives complete, ultra-fast control over the interference. We show that a line-shape index q near unity (maximum asymmetry) may be produced in hydrogenic silicon donors with a relatively weak beam. Since the Fano lineshape has both constructive and destructive interference, the laser control opens the possibility of state-selective detection with enhancement on one side of resonance and invisibility on the other. We discuss a variety of atomic and molecular spectroscopies, and in the case of silicon donors we provide a calculation for a qubit readout application.

