| Huang et al, Optical Cherence Tomography, Nov. 22, 1991, American Association for the Advancement of Science, pp. 1178-1181, vol. 254. |
| Michael Lang, Externa-cavity designs satisfy stringent demands, Jun. 1996, Laser Focus World World,pp. 187-196. |
| Labachelerie et al, Mode-hop suppression of Littrow grating-tuned lasers, Jan. 20, 1993, Applied Optics, pp. 269-274. |
| De Labachelerie et al. Suppression of Littrow Grating-Tuned Lasers. Applied Optics 32(3): 269-274, Jan., 1993. |
| Glombitza et al. Coherent Frequency-Domain Reflectometry for Characterization of Single-Mode Integrated-Optical Waveguides. Journal of Lightwave Technology vol. II (8): 1377-1384, Aug., 1993. |
| Haberland, et al. Optical Tomography, Photon Migration, and Spectroscopy of Tissue and Model Media: Theory, Human Studies, and Instrumentation. SPIE-The International Society for Optical Engineering, 2389: 1-11, Feb., 1995. |
| Passy et al. Experimental and Theoretical Investigations of Coherent OFDR with Semiconductor Laser Sources. Journal of Lightwave Technology 12 (9): 1622-1629, Sep., 1994. |
| Yano et al. Acoustoopic TeO.sub.2 Tunable Filter Using Far-Off-Axis Anisotropic Bragg Diffraction. Applied Optics 15(9): Sep., 1976. |
| Skolnik. CW and Frequency Modulated Radar: Range and Doppler Measurement. In Introduction to Radar Systems, Second Edition, McGraw-Hill Book Company, NY, 1980, pp. 82-85. |
| Favre et al. External-Cavity Semiconductor Laser With 15nm Continuous Tuning Range. Electronics Letters 22(15): 795-796, Jul., 1986. |
| Barfuss et al. Modified Optical Frequency Domain Reflectometry with High Spatial Resolution for Components of Integrated Optic Systems. Journal of Lightwave Technology 7(2):954-960, Jan., 1989. |
| A.L. Kachelmyer. Range-Doppler Imaging with a Laser Radar. The Lincoln Laboratory Journal 3(1): 87-117, 1990. |
| Huang et al. Optical Coherence Tomography. Science, Reprint Series 254; 1178-1181, Nov., 1991. |
| Lang, External-Cavity Designs Satisfy Stringent Demands. Laser Focus World, "Tunable Diode Lasers" pp. 187-196, Jun., 1996. |
| Vail et al. High Performance Micromechanical Tunable Vertical Cavity Surface Emitting Lasers. Electronics Letters, 32(20): 1888-1889, Sep., 1996. |
| Kazharsky et al. Optical Waveguides Testing with Diode Lasers. Optics & Photonics News, pp. 52-54, Oct., 1996. |
| Passy et al. High-Sensitivity-Coherent Optical Frequency-Domain Reflectometry for Characterization of Fiber-Optic Network Components. IEEE Photonics Technology Letters 7 (6): 954-960, Jun., 1995. |
| Takada. High-Resolution OFDR with Incorporated Fiber-Optic Frequency Encoder. IEEE Photonics Technology Letters. 4(9): 1069-1071, Sep., 1992. |
| Trutna et al. Continuously Tuned External Cavity Semiconductor Laser. Journal of Lightwave Technology 11 (8): 1279-1286, Aug., 1993. |
| Venkatesh, et al. Phase Noise Considerations in Coherent Optical FMCW Reflectometry. Journal of Lightwave Technology 11 (10): 1694-1700, Oct., 1993. |
| von der Weid et al. Mid-Range Coherent Optical Frequency Domain Reflectometry with a DFB Laser Diode Coupled to an External Cavity. Journal of Lightwave Technology 13(5): 954-960, May, 1995. |
| Hymans et al. Analysis of a Frequency-Modulated Continuous-Wave Ranging System. The Institution of Electrical Engineers 107: 365-372, Jul., 1960. |
| Treacy. Optical Pulse Compression With Diffraction Gratings. IEEE Journal of Quantum Electronics vol. QE-5 (9): 454-458, Sep., 1969. |