| [1]
D. M. Baney, et.al., “High-frequency photodiode characterization
using a filtered intensity noise technique,” IEEE
Photonics Technol. Lett., 10, p.1258 (1994).
back>
[2] J. W. Dawson, et.al.,
“An improved delayed self-heterodyne interferometer
for linewidth measurements,” IEEE Photonics Technol.
Lett., 4, p.1063 (1992).
back>
[3] S.H. Yun, et.al., “Interrogation
of fiber grating sensor arrays with a wavelength-swept fiber
laser,” Optics Lett., 23, p.843 (1998).
back>
[4] A. Bellemare, et.al.,
“Widely tunable erbium-doped fiber ring lasewr for
fiber-optic test and measurement in the C and L bands,”
Optical Amplifiers and Their Applications, Technical Digest,
OTuD4-1, p.157 (2000).
back>
[5] P.J. Santangelo, J.
Mock, J. Volcy, K. Chandler, K. Hsu, and C. M. Miller, “Fiber
ring laser speeds swept-wavelength measurements for manufacturing,”
WDM Solutions, November (2001).
back>
[6] S.Y. Set, et.al., “Intra-cavity-modulated
swept-lasers for “real-time” dispersion measurement,”
Optical Fiber Communication Conference (OFC'2002), (2001).
[7] A.D. Kersey, et.al.,
“Multiplexed fiber Bragg grating strain-sensor system
with a fiber Fabry-Perot wavelength filter,” Optics
Lett., 18, p.1370 (1993).
back>
[8] C.M. Miller, et.al.,
“Multiplexed fiber gratings enhance mechanical sensing,”
Laser Focus World, p.119, March (1998).
back>
[9] J. W. Dawson, et.al.,
“Suppression of mode-hopping in a single-longitudinal-mode
erbium-doped fiber laser using tandem fiber Fabry-Perot
filters,” OFC-92, WA5, p.99 (1992).
back>
[10] N. Park, et.al.,
“All fiber, low threshold, widely tunable single-frequency,
erbium-doped fiber ring laser with a tandem fiber Fabry-Perot
filter,” Appl. Phys. Lett., 59, p.2369 (1991).
back>
[11] N. Park, et.al.,
“Frequency locking of an erbium-doped fiber ring laser
to an external fiber Fabry-Perot resonator,” Optics
Lett., 18, p. 879 (1993).
back>
[12] G. Grasso, et.al.,
“Single longitudinal mode operation of an erbium-doped
fiber laser with microoptics Fabry-Perot interferometer,“
ECOC-91, p.149 (1991).
back>
[13] C. V. Poulsen and
M. Sejka, “Highly optimized tunable Er3+-doped single
longitudinal mode fiber ring laser, experiment and model,”
IEEE Photonics Technol. Lett., 5, p.646 (1993).
back>
[14] N. Park, et.al.,
“Linewidth and frequency jitter measurement of an
erbium-doped fiber ring laser by using a loss-compensated,
delayed self-heterodyne interferometer,” Optics Lett.,
17, p.1274 (1992).
back>
[15] J. L. Zyskind, et.al.,
“Diode-pumped, electrically tunable erbium-doped fiber
ring laser with fiber Fabry-Perot etalon,” ? ThB3-1
back>
[16] K. Hsu, et.al., "Single-mode
tunable erbium:ytterbium fiber Fabry-Perot microlaser,"
Optics Lett. 19, p.886 (1994).
back>
[17] K. Hsu, et.al., "Continuous
and discrete wavelength tuning in Er:Yb fiber Fabry-Perot
lasers," Optics Lett., 20, p.377 (1995).
back>
[18] T. Haber, et.al.,
“Tunable erbium-doped fiber ring laser precisely locked
to the 50GHz ITU frequency grid,” IEEE Photonics Technol.
Lett., 12, p.1456 (2000).
back>
[19] L. P. Barry, et.al.,
“Tunable transform-limited pulse generation using
self-injection locking of an FP laser,” IEEE Photonics
Technol. Lett., 5, p.1132 (1993).
back>
[20] G. T. Harvey and
L. F. Mollenauer, “Harmonically mode-locked fiber
ring laser with an internal Fabry-Perot stabilizer for soliton
transmission,” Optics Lett., 18, p.107 (1993).
back>
[21] J. S. Wey, et.al.,
“Performance characterization of a harmonically mode-locked
erbium fiber ring laser,” IEEE Photonics Technol.
Lett., 7, p.152 (1995).
back>
[22] K. S. Abedin, et.al.,
“Beat-spectrum tailoring of fiber lasers using an
intracavity Fabry-Perot filter for regenerative and harmonic
mode-locking,” IEEE Photonics Technol. Lett., 11,
p.800 (1999).
back>
[23] Z. Li, et.al., “Effect of tunable
filter characteristics on the pulse performance of actively
mode-locked fiber lasers,” IEEE Photonics Technol.
Lett., 12, p.1462 (2000).
back>
[24] K. Vlachos, et.al.,
“10 simultaneously mode-locked and synchronized channels
at 30GHz from fiber ring laser,” OFC-00, WM45-1, p.344
(2000).
back>
[25] S. Yamashita and
K. Hsu, “Actively mode-locking of miniature fiber
Fabry-Perot laser (FFPL) in a ring cavity,” Electronics
Lett., ??, p.? (2001).
back>
[26] S. Yamashita, K.
Hsu, and R. Hayashi, “Actively mode-locked miniature
fiber Fabry-Perot laser (FFPL),” Conference on Lasers
and Electro-Optics (CLEO’2001), (2001).
back>
[27] E. A. Swanson, et.al.,
“100-GHz soliton pulse train generation using soliton
compression of two phase side bands from a single DFB laser,”
,” IEEE Photonics Technol. Lett., 6, p.1194 (1994).
back>
[28] S. T. Winnall and
A. C. Lindsay, “A Fabry-Perot scanning receiver for
microwave signal processing,” IEEE Transactions on
Microwave Theory and Techniques, 47, p.1385 (1999).
back>
[29] D.P. Baldwin, et.al.,
“High-resolution spectroscopy using an acousto-optic
tunable filter and a fiber-optic Fabry-Perot interferometer,”
Applied Spectroscopy, 50, p.498 (1996).
back>
[30 ] E. Kim, et.al.,
“Polarization based microscopy using a fiber optic
spectral polarimeter,” SPIE Proceeding, 4617, p.191
(2002).
back>
[31 ] Chen-Chun Ye, et.al.,
“A polarization-maintaining fibre Bragg grating interrogation
system for multi-axis strain sensing,” Meas. Sci.
Technol. 13, p.1446 (2002).
back>
|