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Spectral measurement of timing jitter in gain‐switched semiconductor lasers
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12.We exclude period-doubling and chaos: N. Onodera, A. J. Lowery, and R. S. Tucker, Electron. Lett. 27, 1053 (1991);
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13.L. E. Franks, in Signal Theory (Prentice Hall, Englewood Cliffs, NJ, 1969), pp. 221–223, derived a spectrum for this pulse train by a different method. According to Franks (private communication), corrections are needed: replace Fwith with r in the first of Eqs. (8.69), and delete the first P(f) in Eq. (8.70). This was done, but partly misprinted, in a revised edition (Dowden and Culver, Stroudsburg, PA, 1981). Our spectrum agrees with this work. Cf. W. A. Gardner, Statistical Spectral Analysis (Prentice Hall, Englewood Cliffs, NJ, 1988), pp. 423–424, 457–458.
14.The delta functions are obtained from Eq. (A12) of Ref. 3.
15.In applications, a small region around is excluded; see Eq. (6) of Ref. 5.
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17.Calculations by M. Rodwell (private communication) and by us.
18.Analyzer effects (Ref. 4) understate the displayed noise by 1.7 dB.
19.From the absence of dependence, the pulse widths appear to vary <7% rms (cf. Ref. 10). From 0.1-GHz data, For the laser’s electrical driving pulses, ps.
20.J. A. Bell, M. C. Hamilton, D. A. Leep, H. F. Taylor, and Y.-H. Lee, in Optical Technology for Microwave Applications V, edited by S.-K. Yao, Proc. SPIE 1476, 326 (1991).
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