Skip To Content
ADVERTISEMENT

Complete References and Resources

R. B. Brown. “A bibliography and study of inertial rotation sensing,” NRL Memorandum Report #1871 (1968).

S. Hanish. “On the feasibility of detecting low level acoustic signals in the ocean by use of a laser heterodyne detector,” NRL Memorandum Report #3519 (1976).

D.A. Jackson et al. “Elimination of drift in a single-mode optical fiber interferometer using a piezoelectrically stretched coiled fiber,” Appl. Opt., 19, 2926 (1980).

D. A. Jackson et al. “Measurement of small phase shifts using a single-mode optical-fiber interferometer,” Opt. Lett. 5, 139 (1980).

A. Dandridge et al. “Single‐mode diode laser phase noise,” Appl. Phys. Lett. 38, 77 (1981).

A. Dandridge and A.B. Tveten. “Phase compensation in interferometric fiber optic sensors,” Opt. Lett. 7, 279 (1982).

A. Dandridge et al. “Homodyne demodulation scheme for fiber optic sensors using phase generated carrier,” IEEE J. Quantum Electron. 18, 1647 (1982).

N. Frigo et al. “Technique for the elimination of polarization fading in fiber interferometers,” Electron. Lett. 20, 319 (1984).

A. Dandridge et al. “Multiplexing of interferometric sensors using phase-generated carrier techniques,” J. Lightwave Technol. 5, 947 (1987).

J. D. Eversole et al. “Frequency-modulation detection of particle diffusion from heterodyne quasi‑elastic light scattering,” J. Opt. Soc. Amer. A 4, 1220 (1987).

T. G. Giallorenzi, “All-optical towed and conformal arrays,” U.S. patent 4,648,083 (1987).

G. McDearmon. “Theoretical analysis of a push-pull fiber-optic hydrophone,” J. Lightwave Technol. 5, 647 (1987).

A. D. Kersey and A. Dandridge. “Distributed and multiplexed fibre-optic sensors systems”, J. of Institute of Electrical and Radio Engineers (IERE) London, 58, 599 (1988).

A.D. Kersey et al. “Optimization and stabilization of visibility in interferometric fiber-optic sensors using input-polarization control,” J. Lightwave Technol. 6, 1599 (1988).

S.S. Patrick et al. “Responsivity of air-backed, ploycarbonate mandrel based fiber optic hydrophones,” NRL Memorandum Report #7376 (1993).

A.M. Yurek et al. “16-channel lightweight all-optical vertical line array,” Proc. OFS-93 Conference, Florence, Italy, 4-6 May 1993.

F. Bucholtz et al. “Eight-element array of three axis magnetometers for undersea applications,” Optical Fiber Sensors Conference, Glasgow, Scotland, October 1994. 

A.R. Davis et al. “64-channel all-optical deployable acoustic array,” in 12th International Conference on Optical Fiber Sensors, Vol. 16 of 1997 OSA Technical Digest Series (Optical Society of America, 1997), paper OFA6.

G. A. Cranch et al. “Large-scale remotely interrogated arrays of fiber-optic interferometric sensors for underwater acoustic applications,” IEEE Sensors J. 3, 19 (2003).

C.K. Kirkendall et al. “High-resolution distributed fiber optic sensing,” NRL Review 2004 (NRL/PU/3430-04-471), 179 (2004).

C. Kirkendall et al. “Fiber optic towed arrays,” NRL Review (2007).

G.A. Miller et al. “High-performance sensing using fiber lasers,” Opt. Photon. News 23(2), 30 (2012).

B. Redding et al. “Measuring vibrational motion in the presence of speckle using off-axis holography,” Appl. Opt. 55, 1406 (2016).

M.J.  Murray et al. “Fiber-wrapped mandrel microphone for low-noise acoustic measurements,” J. Lightwave Technol 36, 3205 (2018).

Ge-yang Hao, Qi Li, Bo Liu, Wei Liu, Guo-jun Wu, “Sea trial of flow noise of fiber laser hydrophone array,” in International Symposium on Optoelectronic Technology and Application 2018, Beijing, China, SPIE Proc. Vol. 10844, December 2018.

M.J. Murray et al. “Multimode fiber Φ-OTDR with holographic demodulation,” Opt. Express 26, 23019 (2018).

 

Add a Comment