The scientist’s investigation covers issues in Optics, Optical fiber, Polarization-maintaining optical fiber, Optoelectronics and Single-mode optical fiber. He frequently studies issues relating to Gyroscope and Optics. Herbert J. Shaw studies Optical fiber, focusing on Fiber optic sensor in particular.
His Polarization-maintaining optical fiber research integrates issues from Surface wave and Acoustic wave. The study incorporates disciplines such as Polarizer, Kerr effect and Laser in addition to Optoelectronics. His work in Single-mode optical fiber addresses issues such as Mode volume, which are connected to fields such as Mode scrambler, Radiation mode, Helical resonator, Resonator and Dielectric resonator antenna.
Herbert J. Shaw mainly focuses on Optics, Optical fiber, Optoelectronics, Polarization-maintaining optical fiber and Fiber optic sensor. His Gyroscope research extends to the thematically linked field of Optics. He combines subjects such as Modulation and Phase modulation with his study of Gyroscope.
His Optical fiber research incorporates elements of Wavelength, Signal, Laser and Interferometry. In Optoelectronics, he works on issues like Fiber, which are connected to Optical engineering. The Polarization-maintaining optical fiber study which covers Plastic optical fiber that intersects with Photonic-crystal fiber.
His main research concerns Optics, Optical fiber, Optoelectronics, Fiber and Erbium. His work on Optics deals in particular with Fiber laser, Fiber optic sensor, Brillouin zone, Polarization and Dispersion-shifted fiber. His Optical fiber research incorporates themes from Gyroscope, Grating, Phase modulation and Lasing threshold.
His biological study spans a wide range of topics, including Polarization-maintaining optical fiber, Amplifier and Optical amplifier. His research integrates issues of Polarizer, Fibre optic gyroscope, Plastic optical fiber and Graded-index fiber in his study of Polarization-maintaining optical fiber. The various areas that Herbert J. Shaw examines in his Fiber study include Doping, Dopant, Kerr effect, Optical switch and Signal.
His primary scientific interests are in Optics, Optical fiber, Optoelectronics, Fiber laser and Fiber. Herbert J. Shaw studies Optics, namely Grating. His work in the fields of Optical fiber, such as Brillouin scattering, intersects with other areas such as Fabrication.
His Optoelectronics research is multidisciplinary, relying on both Dynamic range, Band-stop filter and Fiber optic sensor, Polarization-maintaining optical fiber, Graded-index fiber. Herbert J. Shaw has researched Fiber laser in several fields, including Dispersion-shifted fiber, Long-period fiber grating, Polarizer and Erbium. His study in the field of Erbium doped fiber lasers also crosses realms of Cluster.
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All-single-mode fiber resonator.
Loren F. Stokes;Marvin Chodorow;Herbert J. Shaw.
Optics Letters (1982)
Optical fiber delay line signal processing
K.P. Jackson;S.A. Newton;B. Moslehi;M. Tur.
(1983)
An overview of fiber-optic gyroscopes
R. Bergh;H. Lefevre;H. Shaw.
Journal of Lightwave Technology (1984)
Fiber-optic lattice signal processing
B. Moslehi;J.W. Goodman;M. Tur;H.J. Shaw.
Proceedings of the IEEE (1984)
Fiber optic amplifier
Herbert John Shaw;Michael J.F. Digonnet.
(1983)
Single-mode fibre optic directional coupler
R.A. Bergh;G. Kotler;H.J. Shaw.
Electronics Letters (1980)
Nd:MgO:LiNbO 3 spectroscopy and laser devices
T. Y. Fan;A. Cordova-Plaza;M. J. F. Digonnet;R. L. Byer.
Journal of The Optical Society of America B-optical Physics (1986)
Optical-fiber delay line signal processing
S. A. Newton;K. P. Jackson;B. Moslehi;M. TuR.
optical fiber communication conference (1984)
Tunable mechanically induced long-period fiber gratings.
S. Savin;M. J. F. Digonnet;G. S. Kino;H. J. Shaw.
Optics Letters (2000)
All-fiber acousto-optic frequency shifter
B Y Kim;J N Blake;H E Engan;H J Shaw.
Optics Letters (1986)
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