Biomedical Engineering Reference
In-Depth Information
34. Gibbs, H. M., S. L. McCall, and T. N. C. Venkatesan. 1980. Optical bistability.
Opt. Eng . 19:463.
35. Gibbs, H. M., S. L. McCall, T. N. C. Venkatesan, A. C. Gossard, A. Passner, and
W. Wiegmann. 1979. Nonlinear optical materials. Appl. Phys. Lett . 35:451.
36. Esaki, L. and R. Tsu, 1970. Superlattice and negative differential conductivity in
semiconductors. IBM J. Res. Dev . 14:61-65.
37. Gibbs, H. M., S. L. McCall, T. N. C. Venkatesan. 1976. Differential gain and bista-
bility using a sodium-filled Fabry-Perot interferometer. Phys. Rev. Lett . 36:1135.
Smith, P. W., E. H. Turner, and P. J. Maloney. 1978. Electro-optic nonlinear Fabry-
Perot devices. IEEE J. Quant. Electron . QE-14:207.
Jewell, J. L., Y. H. Lee, M. Warren. 1985. GaAs étalon optical logic devices. Appl.
Phys. Lett . 46:918.
38. Martin, W. E. 1975. Refractive index profile optimization. Appl. Phys. Lett . 26:562.
Ramaswami, V., M. D. Divino, and R. D. Stanley. 1978. Appl. Phys. Lett . 32:644.
39. Lattes, A., H. A. Haus, F. J. Leonberger, and E. P. Ippen. 1983. An ultrafast all-
optical gate. IEEE J. Quant. Electron . QE-19 (11):1718.
Haus, H. A., N. A. Whitaker, Jr., and M. C. Gabriel. 1985. All-optical logic
devices using group III-IV semiconductor waveguides. Proceedings of SPIE 578
Integrated Optical Circuit Engineering III , p. 122.
40. Mentzer, M. A., S. T. Peng, and D. H. Naghski. Optical logic gate design consid-
erations. SPIE .
41. Wood, T. H., C. A. Burr, D. A. B. Miller, D. S. Chemla, and T. C. Damen. 1985.
IEEE J. Quant. Electron . QE-21 (2):117.
42. Mentzer, M. A., S. T. Peng, and D. H. Naghski. Optical logic gate design consid-
erations. SPIE , pp. 362-377.
43. Bastard, G., E. Mendez, L. H. Chang, and L. Esaki. 1983. Variational calculations
on a quantum well in an electric field. Phys. Rev. B 28 (6):3241.
44. Abromowitz, M. and I. Stegan, eds. 1972. Handbook of Mathematical Functions
with Formulas and Graphs . New York: John Wiley and Sons, p. 496.
45. Ibid., p. 360.
46. Miller, D. A. B., D. S. Chemla, D. J. Eilenberger, D. J. Smith, P. W. Gossard, and
W. T. Tsang. 1982. Optical bistability due to increasing absorption. Appl. Phys.
Lett . 41(8):679.
47. Lo. D. S. Nov. 1984. Selecting memory devices for military applications. Defense
Electron .
48. Schwee, L. J., P. E. Hunter, F. A. Restorff, and M. T. Shepard. 1982. CRAM
Concepts and initial studies. J. Appl. Phys . 53(3):2762.
49. Mentzer, M. A., C. W. Baugh, E. A. Hubbard. 1982. Fabrication and charac-
terization of a crosstie random access memory. IEEE Trans. Magnetics , 3IM3
Conference, July, Montreal, Quebec.
50. Slaughter, J. M. August 2009. Materials for magnetoresistive random access
memory. Annu. Rev. Mater. Res . 39:277-296.
51. Mentzer, M. A., C. W. Baugh. 1982. Magnetic crosstie random access memory.
Best Paper Award. Government Microcircuit Applications Conference , Orlando, FL.
52. Ibid.
53. Mentzer, M. A., D. Lampe. 1984. Signal processing and architecture for the cross-
tie random access memory. Presented at Government Microcircuits Applications
Conference , Las Vegas, NV.
Search WWH ::




Custom Search