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Submillimeter detection and mixing using Schottky diodes
1.T. Y. Chang and T. J. Bridges, Opt. Commun. 1, 423 (1970).
2.L. O. Hocker, D. R. Sokoloff, V. Daneu, A. Szoke, and A. Javan, Appl. Phys. Lett. 12, 401 (1968).
3.K. M. Evenson, J. S. Wells, and L. M. Matarrese, Appl. Phys. Lett. 16, 251 (1970). Some of these problems can be overcome with evaporated point contacts. A. Javan, 1973 IEEE/OSA Conference on Laser Engineering and Applications, Digest of Technical Papers (IEEE, New York, 1973), p. 43.
4.E. J. Becklake, C. D. Payne, and B. E. Prewer, J. Phys. D 3, 473 (1970).
5.Using comparative numbers from C. D. Payne and B. E. P. Prewer, Joint Conference on Lasers and Opto‐Electronics, University of Southampton, IERE, p. 204, 1969 (unpublished).
6.L. M. Matarrese and K. M. Evenson, Appl. Phys. Lett. 17, 8 (1970).
7.Intermediate frequencies of up to 8 GHz have been used with these diodes (see Ref. 10).
8.T. Y. Chang, T. J. Bridges, and E. G. Burkhardt, Appl. Phys. Lett. 17, 249 (1970).
8.The laser line was actually generated in an optically pumped Stark cell described in H. R. Fetterman, H. R. Schlossberg, and C. D. Parker, Appl. Phys. Lett. 23, 684 (1973).
9.Similar harmonic mixing experiments using point contact diodes and additional phase‐sensitive detection gave lower S/N. L. O. Hocker, D. Ramachandra Rao, and A. Javan, Phys. Lett. 24 A, 690 (1968).
10.B. J. Clifton, W. T. Lindley, R. W. Chick, and R. A. Cohen, Proceedings of the Third Biennial Cornell Electrical Engineering Conference, Ithaca, New York, 1971, p. 463 (unpublished).
11.J. C. Irvin and N. C. Vanderwal, in Microwave Semiconductor Devices and their Circuit Applications, edited by H. A. Watson (McGraw‐Hill, New York, 1969), p. 355.
12.Cooling should eventually give even greater reduction in mixer noise. See, e.g., S. Weinreb and A. Kerr, IEEE J. Solid State Circuits 8, 58 (1973).
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