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optical fiber, fiber lasers, fiber sensors, nonlinear fiber optics

Biography

Alejandro Martinez-Rios received the Engineering degree in electromechanics from the Instituto Tecnologico de Leon, Mexico, in 1994, and the Ph.D. degree in optics from the Centro de Investigaciones en Optica (CIO), Leon, México, in 2000. From 2001 to 2002, he was a Senior Scientist with LaserSharp Corporation, Hopkinton MA. In 2010, he was on sabbatical with the Natural Sciences Department, California University, Merced. Since 2003, he has been with CIO as a Titular Researcher C. His research interests include optical fiber sensors and laser devices, and nonlinear optics.

Activities

Employment (1)

Centro de Investigaciones en Optica: Leon, Leon, MX

2003-02-03 to present | Principal Researcher C (Photonics Division)
Employment
Source: Self-asserted source
A. Martinez-Rios

Education and qualifications (2)

Centro de Investigaciones en Optica: Leon, Leon, MX

1995-06-01 to 2000-12-15 | PhD (Fibras Opticas)
Education
Source: Self-asserted source
A. Martinez-Rios

Instituto Tecnologico de Leon: Leon, Guanajuato, MX

1989-01-02 to 1993-12-15 | Bachelor (Electromechanical Engineering)
Education
Source: Self-asserted source
A. Martinez-Rios

Works (27)

An approach to enhance the sensitivity of a Mach–Zehnder displacement fiber sensor using the spectrum differential integration method and the filter in a double-pass configuration

Optical Fiber Technology
2024-10 | Journal article
Contributors: L.E. Guillen-Ruiz; G. Anzueto-Sánchez; A. Martínez-Rios; M.C. Jiménez-Mares; J.L. Camas-Anzueto
Source: check_circle
Crossref

Experimental Demonstration of an Angle Laser Sensor Based on an Optical Thinned Microfiber Mach-Zehnder Interferometer

IEEE Sensors Journal
2024-04-01 | Journal article
Contributors: Guillermo Salceda-Delgado; Alejandro Martinez-Rios; Luis Fernando Enriquez-Gomez
Source: check_circle
Crossref

Two-mode fiber Mach-Zehnder interferometric temperature sensor in the 50 °C – 650 °C range

Optical Fiber Technology
2023-12 | Journal article
Contributors: A.A. González-Roque; D. Toral-Acosta; A. Martínez-Ríos; R. Selvas-Aguilar; G. Anzueto-Sánchez; M.A. Rico-Méndez; V. Guzmán-Ramos
Source: check_circle
Crossref

Demonstration of Improving the Performance of a Fibre Optic Displacement Sensor Using the Optical Harmonic Vernier Effect by Cascading Tapered Optical Single-Mode Fibres

IEEE Photonics Journal
2023-10 | Journal article
Contributors: L. Guillen-Ruiz; G. Anzueto-Sanchez; A. Martínez-Rios; J. Camas-Anzueto; R. E. Nuñez-Gomez; J. A. Martin-Vela
Source: check_circle
Crossref

Switchable Ytterbium Fiber Laser Based on a Symmetrical Long-Period Fiber Grating

IEEE Photonics Journal
2021-06 | Journal article
Contributors: Erika C. Silva-Alvarado; Alejandro Martinez-Rios; Luis M. Ledesma-Carrillo; Daniel Jauregui-Vazquez; Guillermo Salceda-Delgado; Teresa Elena Porraz-Culebro; Javier Antonio Martin Vela; Juan Manuel Sierra-Hernandez
Source: check_circle
Crossref

Optical Capillary Fiber Mode Interferometer for Pressure Sensing

IEEE Sensors Journal
2020-03-01 | Journal article
Contributors: Guillermo Salceda-Delgado; Amy Van Newkirk; Jose Enrique Antonio-Lopez; Alejandro Martinez-Rios; Axel Schulzgen; Rodrigo Amezcua-Correa
Source: check_circle
Crossref

Micro-Deformed Looped Fiber Taper With High Sensitivity to Refractive Index

IEEE Photonics Technology Letters
2020-01-15 | Journal article
Contributors: L. F. Enriquez-Gomez; J. A. Guerrero-Viramontes; A. Martinez-Rios; G. Salceda-Delgado; D. Toral-Acosta; T. E. Porraz-Culebro; R. Selvas-Aguilar; Kenia Madrazo De La Rosa; Gilberto Anzueto-Sanchez
Source: check_circle
Crossref

Curvature Sensing Setup Based on a Fiber Laser and a Long-Period Fiber Grating

IEEE Photonics Technology Letters
2019-08-01 | Journal article
Contributors: Javier A. Martin-Vela; Juan M. Sierra-Hernandez; Alejandro Martinez-Rios; Julian M. Estudillo-Ayala; Eloisa Gallegos-Arellano; Daniel Toral-Acosta; Teresa E. Porraz-Culebro; Daniel Jauregui-Vazquez
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Crossref

Characteristics of LPFGs Written by a CO2-Laser Glass Processing System

Journal of Lightwave Technology
2019-02-15 | Journal article
Contributors: Teresa Elena Porraz-Culebro; Alejandro Martinez-Rios; Daniel Toral-Acosta; Kenia Madrazo-de-la-Rosa; Luis F. Enriquez-Gomez; Juan Manuel Sierra-Hernandez; Guillermo Salceda-Delgado
Source: check_circle
Crossref

Measurement of optical fiber parameters and thermal core diffusion characteristics by digital image processing

Applied Optics
2018-05-20 | Journal article
Contributors: F. Chavez-Gutierrez; A. Martinez-Rios; D. Toral-Acosta; D. Torres-Armenta; J. A. Guerrero-Viramontes
Source: check_circle
Crossref

Journal article
DOI:

http://dx.doi.org/10.1023/a:1019952206624

Source: Self-asserted source
A. Martinez-Rios

<title>Polarization controlled tunable Yb3+-doped fiber lasers</title>

Conference paper
DOI:

http://dx.doi.org/10.1117/12.742596

Source: Self-asserted source
A. Martinez-Rios

An Intrinsic Fiber-Optic Single Loop Micro-Displacement Sensor

Journal article
DOI:

http://dx.doi.org/10.3390/s120100415

Source: Self-asserted source
A. Martinez-Rios

Analysis of a Q-switched ytterbium-doped double-clad fiber laser with simultaneous mode locking

Journal article
DOI:

http://dx.doi.org/10.1016/s0030-4018(03)01722-x

Source: Self-asserted source
A. Martinez-Rios

Arc-induced long-period fiber gratings inscribed in asymmetric adiabatic tapers

Conference paper
DOI:

http://dx.doi.org/10.1117/12.2001864

Source: Self-asserted source
A. Martinez-Rios

Characterization of an Intra-Cavity Pumped P2O5-Doped Silica Raman Fiber Laser

Journal article
DOI:

http://dx.doi.org/10.1007/s10043-006-0424-8

Source: Self-asserted source
A. Martinez-Rios

Compact Sensors Based on Cascaded Single-Mode–Multimode–Single-Mode Fiber Structures

Journal article
DOI:

http://dx.doi.org/10.7567/apex.6.032502

Source: Self-asserted source
A. Martinez-Rios

Compact, Simple Tuneable Mechanism for Fibre Lasers

Conference paper
DOI:

http://dx.doi.org/10.1364/fio.2006.jsua62

Source: Self-asserted source
A. Martinez-Rios

Experimental study of stimulated Brillouin and Raman scatterings in a Q-switched cladding-pumped fiber laser

Journal article
DOI:

http://dx.doi.org/10.1016/j.yofte.2003.11.004

Source: Self-asserted source
A. Martinez-Rios

Fattened Fiber Filter

Conference paper
DOI:

http://dx.doi.org/10.1364/fio.2007.jsua36

Source: Self-asserted source
A. Martinez-Rios

Higher-order core mode resonances in a mechanically induced long-period holey fiber grating

Journal article
DOI:

http://dx.doi.org/10.1007/s10043-009-0120-6

Source: Self-asserted source
A. Martinez-Rios

Long Period Fibre Gratings

Book chapter
DOI:

http://dx.doi.org/10.5772/27727

Source: Self-asserted source
A. Martinez-Rios

Mach-Zehnder all-fiber interferometer using two in-series fattened fiber gratings

Journal article
DOI:

http://dx.doi.org/10.1007/s10043-008-0036-6

Source: Self-asserted source
A. Martinez-Rios

Raman response function and Raman fraction of phosphosilicate fibers

Journal article
DOI:

http://dx.doi.org/10.1007/s11082-012-9584-x

Source: Self-asserted source
A. Martinez-Rios

Raman Response Function of Phosphosilicate Fiber

Conference paper
DOI:

http://dx.doi.org/10.1364/fio.2011.fmn6

Source: Self-asserted source
A. Martinez-Rios

Tailoring Mach&#x2013;Zehnder Comb-Filters Based on Concatenated Tapers

Journal article
DOI:

http://dx.doi.org/10.1109/jlt.2012.2233461

Source: Self-asserted source
A. Martinez-Rios

Wavelength-dependent selective loss for wavelength switching operation of an erbium-doped fiber ring laser

Journal article
DOI:

http://dx.doi.org/10.1007/s10043-011-0059-2

Source: Self-asserted source
A. Martinez-Rios

Peer review (26 reviews for 7 publications/grants)

Review activity for Measurement. (2)
Review activity for Nature communications (1)
Review activity for Optical fiber technology. (12)
Review activity for Optical materials. (1)
Review activity for Optics and Laser Technology. (8)
Review activity for Optics communications. (1)
Review activity for Sensors and actuators. (1)