1985
DOI: 10.1049/el:19850573
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InGaAs PIN photodetectors with modulation response to millimetre wavelengths

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Cited by 87 publications
(14 citation statements)
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“…The transit-time limited response of the surface illuminated p-i-n has been examined in some detail [47], [48]. Using the formulations developed for the p-i-n [( 1) in [47] and [48]] we can obtain an upper bound to the transit-time limited bandwidth of the MSM; this is equal to the bandwidth of the p-i-n for which the optical penetration depth is much greater than the thickness of the intrinsic region (in this p-i-n response model, the absorption is restricted to the intrinsic region, which is assumed depleted). The corresponding MSM is the one where the interdigital spacing is equal to the thickness of the p-i-n intrinsic region.…”
Section: Temporal Responsementioning
confidence: 99%
“…The transit-time limited response of the surface illuminated p-i-n has been examined in some detail [47], [48]. Using the formulations developed for the p-i-n [( 1) in [47] and [48]] we can obtain an upper bound to the transit-time limited bandwidth of the MSM; this is equal to the bandwidth of the p-i-n for which the optical penetration depth is much greater than the thickness of the intrinsic region (in this p-i-n response model, the absorption is restricted to the intrinsic region, which is assumed depleted). The corresponding MSM is the one where the interdigital spacing is equal to the thickness of the p-i-n intrinsic region.…”
Section: Temporal Responsementioning
confidence: 99%
“…These frequency limitations effects are included in PIN transfer function Hp(f) and its model and parameters are described in Ref. 12. The value of intrinsic layer thickness of the PIN has been adjusted to LpJN =1 .2.tm, in order to its frequency response has a -3dB bandwidth of 50GHz.…”
Section: Flh(t)mentioning
confidence: 99%
“…By reducing the absorption region thickness, i.e. the thickness of the "i" layer, from 2.7 jim to 0.5 jim, the bandwidth increased from 12 0Hz to 36 0Hz [12]. However, the measured quantum …”
Section: Introductionmentioning
confidence: 97%