Knight et al, “Photonic crystals as optical fibres—physics and applications”, Optical Materials 11 (1999) pp 143-151. |
Birks et al, “Full 2-D photonoci bandgaps in silica/air structures”, Electronics Letters, vol. 31, No. 22, Oct. 26, 1995, pp. 1941-1943. |
Knight et al, “All-silica-mode optical fiber with photonic crystal cladding: errata”, Optics Letters, Vo. 22, No. 7, Apr. 1, 1997, pp. 484-485. |
Broeng et al, “Highly increased photonic band gaps in silica/air structures”, Optics Communications, 156, Nov. 15, 1998, pp. 240-244. |
Barkou et al, “Silica-air photonic crystal fiber design that permits waveguiding by a true photonic bandgap effect”, Optics Letters, vol. 24, No. 1, Jan. 1, 1999, pp. 46-48. |
Barkou et al, “Dispersion properties of photonic bandgap guiding fibers”, Novel Fiber Structures (Cat. I), Feb. 26, 1999, pp. 117-119. |
Bjarklev et al, “Dispersion Properties of Photonic Crystal Fibres”, ECOC'98, Sep. 1998, pp. 135-136. |
Knight et al, “Pure Silica Single-Mode Fibre with Hexagonal Photonic Crystal Cladding”, OFC'96, Feb. 29, 1996, pp. 1-4. |
Knight et al, “All-silica single-mde optical fiber with photonic crystal cladding”, Optics Letters, vol. 21, No. 19, Oct. 1, 1996, pp. 1547-1549. |
Birks et al, “Endlessly single-mode photonic crystal fiber”, Optics Letters, vol. 22, No. 13, Jul. 1, 1997, pp. 961-963. |
Knight et al, “Large mode area photonic crystal fibre”, Electronics Letters, vol. 32, No. 13, Jun. 25, 1998, p. 1347-. |
Knight et al, “Properties of photonic crystal fiber and the effective index model”, J. Opt. Soc. Am. A, vol. 15, No. 3, Mar. 1998, pp. 748-752. |
Russell et al, “Silica/Air Photonic Crystal Fibres”, Proc. Int. Workshop on Silica Glasses Jpn. J. Appl. Phys., vol. 37 Supp. 37-1, 1998, pp. 45-48. |
Knight et al, “Bragg scattering from an obliquely illuminated photonic crystal fiber”, Applied Optics, vol. 37, No. 3, Jan. 20, 1998, pp. 449-452. |
Birks et al, “2D Photonic Band Gap Structures in Fibre Form”, Photonic Band Gap Materials, 1996, pp. 1-8. |
Russell et al, “Photonic Crystal Fibres”, ECOC 97, Conference Publication No. 448, Sep. 1997, p. 63. |
Birks et al, “The analogy between photonic crystal fibres and step index fibres”, Novel Fiber Structures (Cat.I), Feb. 26, 1999, pp. 114-116. |
Birks et al, “Single material fibres for dispersion compensation”, Novel Fiber Structures (Cat.I), Feb. 26, 1999, pp. 108-110. |
Windeler et al, “Silica-Air Microstructured Fibers: Properties and Applications”, Novel Fiber Structures (Cat. I), Feb. 26, 1999, pp. 106-107. |
Monro et al, “Efficient modelling of holey fibers”, Novel Fiber Structures (Cat. I), Feb. 26, 1999, pp. 111-113. |
Ferrando et al, “Full-vector analysis of a realistic photonic crystal fiber”, Optics Letters, vol. 24, No. 5, pp. 276-278, Mar. 1, 1999. |
Ferrando et al, “Designing a photonic crystal fibre with flattened chromatic dispersion”, Electronic Letters, vol. 35, No. 4, Feb. 18, 1999, (2 pages). |
Gander et al, “Experimental measurement of group velocity dispersion in photonic crystal fibre”, Electronics Letters, vol. 35, No. 1, Jan. 7, 1999, (2 pages). |
Espindola et al, “External refractive index insensitive air-clad long period fibre grating”, Electronics Letters, vol. 35, No. 4, Feb. 18, 1999, (2 pages). |
Broeng et al, “Polarization properties of photonic bandgap fibers”, Center for Communications, Optics, and Materials (COM), ThG2-1-ThG2-4. |
Monro et al, “Holey fibers with random cladding distributions”, Optics Letters, vol. 25, No. 4, Feb. 15, 2000, pp. 206-208. |
Broeng et al, “Analysis of air-guiding photonic bandgap fibers”, Optics Letters, vol. 25, No. 2, Jan. 15, 2000, pp. 96-98. |
Mogilevtsev et al, “Group-velocity dispersion in photonic crystal fibers”, Optics Letters, vol. 23, No. 21, Nov. 1, 1998, pp. 1662-1664. |
Knight et al, “Photonic Band Gap Guidance in Optical Fibers”, Science, vol. 282, Nov. 20, 1998, pp. 1476-1478. |