Simplex-coded BOTDA fiber sensor with 1 m spatial resolution over a 50 km range MA Soto, G Bolognini, F Di Pasquale, L Thévenaz Optics letters 35 (2), 259-261, 2010 | 287 | 2010 |
The effect of pair-induced energy transfer on the performance of silica waveguide amplifiers with high Er/sup 3+//Yb/sup 3+/concentrations M Federighi, F Di Pasquale IEEE Photonics Technology Letters 7 (3), 303-305, 1995 | 150 | 1995 |
Long-range simplex-coded BOTDA sensor over 120km distance employing optical preamplification MA Soto, G Bolognini, F Di Pasquale Optics letters 36 (2), 232-234, 2011 | 139 | 2011 |
Modeling of four-wave mixing and gain peaking in amplified WDM optical communication systems and networks W Zeiler, F Di Pasquale, P Bayvel, JE Midwinter Journal of Lightwave Technology 14 (9), 1933-1942, 1996 | 136 | 1996 |
Improved gain characteristics in high-concentration Er/sup 3+//Yb/sup 3+/codoped glass waveguide amplifiers F Di Pasquale, M Federighi IEEE Journal of Quantum Electronics 30 (9), 2127-2131, 1994 | 132 | 1994 |
Analysis of distributed temperature sensing based on Raman scattering using OTDR coding and discrete Raman amplification G Bolognini, J Park, MA Soto, N Park, F Di Pasquale Measurement Science and Technology 18 (10), 3211, 2007 | 130 | 2007 |
Raman-based distributed temperature sensor with simplex coding and link optimization J Park, G Bolognini, D Lee, P Kim, P Cho, F Di Pasquale, N Park IEEE Photonics Technology Letters 18 (17), 1879-1881, 2006 | 129 | 2006 |
Optimization of long-range BOTDA sensors with high resolution using first-order bi-directional Raman amplification MA Soto, G Bolognini, F Di Pasquale Optics express 19 (5), 4444-4457, 2011 | 124 | 2011 |
Raman-based distributed temperature sensor with 1 m spatial resolution over 26 km SMF using low-repetition-rate cyclic pulse coding MA Soto, T Nannipieri, A Signorini, A Lazzeri, F Baronti, R Roncella, ... Optics letters 36 (13), 2557-2559, 2011 | 118 | 2011 |
Analysis of pulse modulation format in coded BOTDA sensors MA Soto, G Bolognini, F Di Pasquale Optics Express 18 (14), 14878-14892, 2010 | 99 | 2010 |
A cost-effective distributed acoustic sensor using a commercial off-the-shelf DFB laser and direct detection phase-OTDR Y Muanenda, CJ Oton, S Faralli, F Di Pasquale IEEE Photonics Journal 8 (1), 1-10, 2015 | 95 | 2015 |
Dynamic phase extraction in a modulated double-pulse ϕ-OTDR sensor using a stable homodyne demodulation in direct detection Y Muanenda, S Faralli, CJ Oton, F Di Pasquale Optics express 26 (2), 687-701, 2018 | 93 | 2018 |
Impact of double Rayleigh scattering noise in distributed higher order Raman pumping schemes S Faralli, F Di Pasquale IEEE Photonics Technology Letters 15 (6), 804-806, 2003 | 88 | 2003 |
Analysis of erbium-doped waveguide amplifiers by a full-vectorial finite-element method F Di Pasquale, M Zoboli Journal of lightwave Technology 11 (10), 1565-1574, 1993 | 88 | 1993 |
Modelling of uniform and pair-induced upconversion mechanisms in high-concentration erbium-doped silica waveguides F Di Pasquale, M Federighi Journal of lightwave technology 13 (9), 1858-1864, 1995 | 87 | 1995 |
Analysis of optical pulse coding in spontaneous Brillouin-based distributed temperature sensors MA Soto, G Bolognini, F Di Pasquale Optics Express 16 (23), 19097-19111, 2008 | 86 | 2008 |
Simplex-coded BOTDA sensor over 120-km SMF with 1-m spatial resolution assisted by optimized bidirectional Raman amplification MA Soto, M Taki, G Bolognini, F Di Pasquale IEEE Photonics Technology Letters 24 (20), 1823-1826, 2012 | 83 | 2012 |
Finite-element modeling of silica waveguide amplifiers with high erbium concentration F Di Pasquale, M Zoboli, M Federighi, I Massarek IEEE journal of quantum electronics 30 (5), 1277-1282, 1994 | 80 | 1994 |
Integrated TE and TM optical circulators on ultra-low-loss silicon nitride platform P Pintus, F Di Pasquale, JE Bowers Optics express 21 (4), 5041-5052, 2013 | 75 | 2013 |
Modeling of highly-efficient grating-feedback and Fabry-Perot Er/sup 3+/-Yb/sup 3+/co-doped fiber lasers F Di Pasquale IEEE journal of quantum electronics 32 (2), 326-332, 1996 | 75 | 1996 |