More than 200 publications. This is a partial list.
- M. Abolbashari, F. Magalhães, F. M. Araújo, M.V. Correia, F. Farahi “High
- dynamic range compressive imaging: a programmable imaging system” J. Optical Engineering, Opt. Eng. 51, 071407 (Jun 11, 2012)
- F. Magalhães, M. Abolbashari, F. M. Araújo, M.V. Correia, F. Farahi “High resolution hyperspectral single-pixel imaging system based on compressive sensing” J. Optical Engineering, 51, 071406 (May 25, 2012)
- M. Abolbashari, A. S. Gerges, A. Davies, F. Farahi, “Image continuity at different levels of zoom for fringe patterns” Optics Express, p.7-16, Vol. 20, No. 1, January 2012.
- M. Mayeh, F. Farahi, “Tailoring Gaussian Laser Beam Shape Through Controlled Etching of Single-Mode and Multimode Fibers: Simulation and Experimental Studies” IEEE Sensors Journal, p. 168-173, Vol. 12, No.1, January 2012.
- F. Magalhães, F. M. Araújo, M. V. Correia, M. Abolbashari, F. Farahi, “Active illumination single-pixel camera based on compressive sensing”, Applied Optics, Vol. 50, No. 4, p. 405, 2011.
- S. Tozburun, G.A. Lagoda, M. Mayeh, A.L. Burnett, F. Farahi, N.M. Fried, “A compact laparoscopic probe for optical stimulation of the prostate nerves” IEEE Journal of Selected Topics in Quantum Electronics, Vol.16, No. 4, p. 941, 2010.
- S. H. Aref, R. Amezcua-Correac, J. P. Carvalho, O. Frazão, J. L. Santos, F. M. Araújo, H. Latifi, F. Farahi, L. A. Ferreira, J. C. Knight, “Spectral Characterization of a Photonic Band-Gap Fiber for Sensing Applications” Applied Optics, Vol. 49, Issue 10, pp. 1870-1875 2010.
- D. Purcell, A. Suratkar, A. Davies, F. Farahi, H. Ottevaere, and H. Thienpont, “Interferometric technique for faceted microstructure metrology using an index matching liquid” Applied Optics, Vol. 49, No. 4, p. 732, February 2010.
- S. H. Aref, R. Amezcua-Correa, J. P. Carvalho, O. Frazão, P. Caldas, J. L. Santos, F. M. Araújo, H. Latifi, F. Farahi, L. A. Ferreira, J. C. Knight, “Modal interferometer based on hollow-core photonic crystal fiber for strain and temperature measurement” Optics Express, Vol. 17, No. 21, p. 18669, 12 October 2009.
- K. Edward, F. Farahi, B. Hocken, “Hybrid shear force feedback/scanning quantitative phase microscopy applied to subsurface imaging” Optics Express, Vol.17, No. 21, p. 18409, 12 October 2009.
- S. H. Aref, O. Frazão, P. Caldas, L. A. Ferreira, F. M. Araújo, J. L. Santos, H. Latifi, P. Foy, T. Hawkins, J. Ballato, T. Her, F. Farahi, “Modal Interferometer Based on ARROW Fiber for Strain and Temperature Measurement” IEEE Photonics Technology Letters, Vol.21, No. 21, November 1, 2009
- O. Frazão, S. H. Aref, J. M. Baptista, J. L. Santos, H. Latifi, F. Farahi, J. Kobelke, K. Schuster, “Fabry–Perot Cavity Based on a Suspended-Core Fiber for Strain and Temperature Measurement” IEEE Photonics Technology Letters, Vol. 21, No. 17, September 1, 2009
- M. Mayeh, J. Viegas, P. Srinivasan, P. Marques, J. L. Santos, E. G. Johnson, F. Farahi, “Design and Fabrication of Slotted Multimode Interference Devices for Chemical and Biological Sensing” Journal of Sensors, Article ID 470175, doi:10.1155/2009/470175, 2009.
- K. Edward, T.W. Mayes, R. Hocken, F. Farahi, “Tri-modal imaging system capable of quantitative phase imaging without 2π ambiguities” Optics Lett. Vol.33, P.216 , 2008.
- P.A.S. Jorge, C. Maule, A.J. Silva, R. Benrashid, J.L. Santos, F. Farahi, “Dual sensing of oxygen and temperature using quantum dots and a ruthenium complex” Analytica Chimica Acta 6 0 6, 223–229, 2008.
- F. Farahi, “Fabrication and metrology of micro-and nano-optics”, SPIE Newsroom, 10.1117.21200710.0900, 2007.
- P. Jorge, M.A. Martins, T. Trindade, J.L. Santos, F. Farahi, “Optical Fiber Sensing Using Quantum Dots” Sensors, 7, 3488-3534, 2007.
- O. Frazão, J. Viegas, P. Caldas, J. L. Santos, F. M. Araújo, L.A. Ferreira, F. Farahi, “All-fiber Mach-Zehnder curvature sensor based on multimode interference combined with a long period grating”, Optics Letters 32, 3074-3076, 2007.
- D. Purcell, A. Davies, F. Farahi, “Effective wavelength calibration for moiré fringe projection” J. Applied Optics, Vol. 45, p. 8629, (2006).
- P.A.S. Jorge, M. Mayeh, R. Benrashid, P. Caldas, J.L. Santos, F. Farahi, “Quantum dots as self-referenced optical fiber temperature probes for luminescent chemical sensors” J. Meas. Sci. Technology Vol. 17,p. 1032, (2006).
- P.A.S. Jorge, M. Mayeh, R. Benrashid, P. Caldas, J.L. Santos, F. Farahi, “Applications of quantum dots in optical fiber luminescent oxygen sensors” J. Applied Optics, Vol. 45, p. 3760, (2006).
- P. A. S. Jorge, P. Caldas, J. C. G. Esteves da Silva, C. C. Rosa, A. G. Oliva, J. L. Santos, F. Farahi, “Luminescence-Based Optical Fiber Chemical Sensors” J. Fiber & Integrated Optics, p. 201-225, Vol. 24 (2005).
- F. Farahi, P. Jorge, M. Mayeh, R. Benrashid, P. Caldas, J. Santos, “Applications of nano-particles in optical chemical and biological sensors ” Invited Paper, OpticsEast, Philadelphia, SPIE Conference Proceeding Vol. 5590, p. 66 (2004).
- P. J. Moyer, A. Pridmore, and F. Farahi, “Multimode Interference Switch Design with Loose Manufacturing Tolerance”, Opt. Eng. 43, 165-169 (2004).
- P. A. S. Jorge, P. Caldas, L. A. Ferreira, A. B. Lobo Ribeiro, J. L. Santos, F. Farahi, “Electrical current metering with a dual interferometric configuration and serrodyne signal processing ” Measurement Science and Technology 13, 533 (2002).
- F. M. Araújo, L. A. Ferreira, J. L. Santos, F. Farahi “Temperature and strain insensitive bend measurements with D-type fiber Bragg gratings” Measurement Science and Technology (Special Issue: Optical Fiber Sensors) 12, 829 (2001).
- L.A. Ferreira, F.M. Araujo, J.L. Santos, F. Farahi, “Simultaneous Measurement of Strain and Temperature using Interferometrically Interrogated Fiber Bragg Grating Sensors”, Optical Engineering Vol.39, p.2226 (2000).
- J. Angelichio, M. Nannini, F. Farahi, “An Intelligent Fiber Sensor for Smart Structures” Journal of Structural Control, Vol. 7, No.1, p. 7 (2000).
- L.A. Ferreira, E.V. Diatzikis, P.J. Moreira, J.L. Santos, F. Farahi, “Application of multimode laser diodes in the interrogation of fiber Bragg grating sensors”, Invited Paper, Optical Fiber Technology, vol. 6, p. 365 (2000).
- K.S. Kang, W.N. Sisk, M.Y.A. Raja, F. Farahi, “Field-enhanced photodegradation of pyrromethene dye films .” J. Photochemistry and Photobiology A: Chemistry, 121, p. 133 (1999).
- P.J. Moreira, L.A. Ferreira, J.L. Santos, F. Farahi, “Dynamic Range Enhancement in Fibre Bragg Grating Sensors Using a Multimode Laser Diode ” IEEE Photonics Tech. Lett., Vol. 11, p. 703 (1999).
- L.A. Ferreira, E.V. Diatzikas, J.L. Santos, F. Farahi, “Demodulation of Fiber Bragg Grating Sensors Based on Dynamic Tuning of Multimode Laser Diode “, Applied Optics, vol. 38, p.4751 (1999).
- P.M. Cavaleiro, F.M. Araujo, L.A. Ferreira, J.L. Santos, F. Farahi, “Simultaneous Measurement of Strain and Temperature Using Bragg Gratings Written in Germanosilicate and Boron Codoped-Germanosilicate Fibers ” IEEE Photonics Technology Letters, Vol. 11, p.1635 (1999).
- L.A. Ferreira, A.B. Lobo Ribeiro, J.L. Santos, F. Farahi, “Simultaneous displacement and temperature sensing using a white light interrogated low finesse cavity in line with a fiber Bragg grating” J. Smart Materials and Structures, Vol. 7, p. 189 (1998).
- L.A. Ferreira, E.V. Diatzikis, J.L. Santos, F. Farahi, “Frequency Modulated Multimode Laser Diode for Fiber Bragg Sensors” J. Lightwave Tech., Vol. 16, p. 1620 (1998).
- F.M. Araujo, L.A. Ferreira, J.L. Santos, F. Farahi, “Demodulation scheme for fiber Bragg grating sensors based on active control of WDM spectral response” Applied Optics, Vol. 37, p. 7940 (1998).
- L.A. Ferreira, J.L. Santos, F. Farahi, “Pseudo-heterodyne demodulation technique for fiber Bragg grating sensors using two matched gratings ” IEEE Photonics Tech. Lett, Vol.9, p. 487 (1997).
- W. Sisk, Dong Hee Kang, M.Y.A. Raja, F. Farahi, “Photocurrent and optical limiting studies of C-60 films and solutions” Int. J. Optoelectronics, p. 325-331, Vol. 11, p.325 (1997).
- L.A. Ferreira, A.B. Lobo Ribeiro, J.L. Santos, F. Farahi, “Simultaneous measurement of displacement and temperature using low finesse cavity and a fiber Bragg grating ” IEEE Photonics Tech. Lett, Vol. 8, p. 1519 (1996).
- F. Farahi, J.D.C. Jones, D.A. Jackson, “Multiplexed fiber-optic interferometric sensing system: combined frequency and time division,” Selected Papers on Interference, Interferometry, and Interferometric Metrology, P. Hariharan, D. Malacara, Editors, SPIE Milestone Series 110, p. 580 (1995).
- W. Sisk, K.S. Kang, M.Y.A. Raja, F. Farahi, “Matrix and donor/acceptor dependence of polymer dispersed pyrromethene dye photoconductivity” Int. J. of Optoelectronics, Vol. 10, p. 95 (1995).
- S. Shukes, F. Farahi, M.Y.A. Raja, R. Splinter, “White light fiber-optic interferometry: A technique for monitoring tissue properties” Proceedings Trends in Optical Fiber Metrology and Standards, Ed: O.D.D. Soares , p. 833 (1995).
- L.A. Ferreira, J.L. Santos, F. Farahi, “Polarization insensitive fiber-optic white-light interferometry” Optics Communications, Vol. 114, p. 386 (1995).
- L.A. Ferreira, J.L. Santos, F. Farahi, “Polarization induced noise in a fiber-optic Michelson interferometer with Faraday rotator mirror elements ” Applied Optics, Vol. 34, p. 6399 (1995).
- R. R. Gauthier, F. Farahi, N. Dahi , “Fiber-optic white-light interferometry: lead sensitivity considerations” Opt. Lett., Vol. 19, p.138 (1994).
- F. Farahi, T.W. Mayes, “Demonstration of optical logic operations using fiber-optic interferometry” Am. J. Phys. Vol. 62, p. 467 (1994). F. Farahi, “Fiber-Optic Interferometric Point Thermometer” Fiber and Integrated Optics, Vol. 10, p. 205 (1992).
- J.L Santos, F. Farahi, T.P. Newson, A.P. Leite, D.A. Jackson, “Frequency Multiplexing of Remote all Fiber Michelson Interferometers with Lead Insensitivity ” Journal of Lightwave Technology, Vol. 10, No.3 (1992).
- P.St.J. Russell, D. Culverhouse, F. Farahi, “Theory of Forward Stimulated Brillouin Scattering in Dual-Mode Single-Core Fibers ” IEEE Journal of Quantum Electronics, Vol.27, No.3, p.836 (1991).
- F. Farahi, J.D.C. Jones, D.A. Jackson, “High Speed Fiber Optic Temperature sensor” Optics Lett. Vol.16, No.22, p. 1800 (1991).
- S.C. Bartlett, F. Farahi, D.A. Jackson, “A Dual Resolution Non Contact Vibration and Displacement Sensor Based Upon a Two Wavelength Source” Rev. Sci. Instrum., Vol.61, No.3, p.1014 (1990).
- F. Farahi , D.A. Jackson, “A Fiber Optic Interferometric System for Surface Profiling” Rev. Sci. Instrum., Vol.61, No.2, p.753 (1990).
- F. Farahi, D.J. Webb, J.D.C. Jones, D.A. Jackson, “Simultaneous Measurement of Temperature and Strain: Cross-Sensitivity Considerations ” Journal of Lightwave Technology, Vol. 8, No.2, p.138 (1990).
- S.C. Bartlett, F. Farahi, D.A. Jackson, “Current sensing using Faraday rotation and a common path fiber Heterodyne interferometer” Rev. Sci. Instrum. Vol.61, p.2433 (1990).
- J.L. Santos, F. Farahi, T.P. Newson, D.A. Jackson, “Time Division Multiplexing of Optical Fiber Sensors with Sampled Modulation of Laser Diode” Optics Communications, Vol.78, No.2, p.143 (1990).
- P.St.J. Russell, D. Culverhouse, F. Farahi, “Experimental Observation of Forward Stimulated Brillouin Scattering in Dual-Mode Single-Core Fiber ” Electronics Letters, Vol.26, No.15, p.1195 (1990).
- F. Farahi, N. Takahashi, J.D.C. Jones, D.A. Jackson, “Multiplexed Fiber Optic Sensors Using Ring Interferometers ” Journal of Modern Optics, Vol.36, No.3, p.337 (1989).
- T.P. Newson, F. Farahi, J.D.C. Jones, D.A. Jackson, “Reduction of Semiconductor Laser Diode Phase and Amplitude Noise in Interferometric Fiber Optic Sensors ” Applied Optics, Vol.28, p.4210 (1989).
- D. Culverhouse, F. Farahi, C.N. Pannell, D.A. Jackson, “Potential of Stimulated Brillouin Scattering as Sensing Mechanism for Distributed Temperature Sensors ” Electronics Letters, Vol.25, No.14, p.913 (1989).
- D. Culverhouse, F. Farahi, C.N. Pannell, D.A. Jackson, “Stimulated Brillouin Scattering: a Means to Realize Tunable Microwave Generator or Distributed Temperature Sensor ” Electronics Letters, Vol.25, NO.14, p.915 (1989).
- A.S. Gerges, F. Farahi, T.P. Newson, J.D.C. Jones, D.A. Jackson, “A Fiber Interferometric Sensor Utilizing a Low Coherence Length Source: Resolution Enhancement” Electronics Letters, Vol.24, No.8, p.472 (1988).
- F. Farahi, T.P. Newson, P. Akhavan Leilabady, J.D.C. Jones, D.A. Jackson, “A Multiplexed Remote Fiber Optic Fabry-Perot Sensing System” Int. Journal of Opto-Electronics, Vol.3, No.1, p.79 (1988).
- F. Farahi, T.P. Newson, J.D.C. Jones, D.A. Jackson, “Coherence Multiplexing of Remote Fiber Optic Fabry-Perot Sensing System” Optics Communications, Vol.65, No.5, p.319 (1988).
- F. Farahi, J.D.C. Jones, D.A. Jackson, “An Extended Range Temperature Sensor” Int. Journal of Opto-Electronics, Vol.3, No.3, p.237 (1988).
- F. Farahi, A.S. Gerges, J.D.C. Jones, D.A. Jackson, “Time-Division Multiplexing of Fiber Optic Interferometric Sensors Using a Frequency Modulated Laser Diode ” Electronics Letters, Vol.24, No.1, p.54 (1988).
- A.S. Gerges, F. Farahi, T.P. Newson, J.D.C. Jones, D.A. Jackson, “Fiber Optic Interferometric Sensors Using a Low Coherence Length Source: Dynamic Range Enhancement” Int. Journal of Opto-Electronics, Vol.3, No.4, p.311 (1988).
- T.P. Newson, F. Farahi, J.D.C. Jones, D.A. Jackson, “Combined Interferometric and Polarimetric Fiber Optic Temperature Sensor With a Short Coherence Length Source” Optics Communications, Vol.68, No.3, p.161 (1988).
- F. Farahi, J.D.C. Jones, D.A. Jackson,” A Multiplexed Fiber Optic Interferometric Sensing System: Combined Frequency and Time Division ” Electronics Letters, Vol.24, No.7, p.409 (1988).
- A.S. Gerges, T.P. Newson, F. Farahi, J.D.C. Jones, D.A. Jackson, “A Hemispherical Air Cavity Fiber Fabry-Perot Sensor” Optics Communications, Vol.68, NO.3, p.157 (1988).
- F. Farahi, P. Akhavan Leilabady, J.D.C. Jones, D.A. Jackson, “Optical Fiber Flammable Gas Sensor” Journal of Physics E: Scientific Instruments, Vol.20, p.435 (1987).
- F. Farahi, P. Akhavan Leilabady, J.D.C. Jones, D.A. Jackson, “Interferometric Fiber Optic Hydrogen Sensor” Journal of Physics E: Scientific Instruments, Vol.20, p.432 (1987).
- A.S. Gerges, F. Farahi, T.P. Newson, J.D.C. Jones, D.A. Jackson, “An Interferometric Fiber Optic Sensor Using a Short Coherence Length Source” Electronics Letters, Vol.23, No.21, p.1110 (1987).