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Dive into the research topics where C.P. Seltzer is active.

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Featured researches published by C.P. Seltzer.


international semiconductor laser conference | 1994

1.5 /spl mu/m InGaAsP/InP large mode size laser for high coupling efficiency to cleaved single mode fibre

I.F. Lealman; Michael J. Robertson; L.J. Rivers; M.J. Harlow; S.D. Perrin; C.P. Seltzer

Increased mode size MQW BH lasers utilising a tapered active region and passive guide have shown cleaved fibre coupling losses down to 4.1 dB with threshold currents of 4.9 mA and 15 mA at 20/spl deg/C and 80/spl deg/C respectively.


Semiconductor Science and Technology | 1994

A study of 0.98 mu m lasers with Ga0.50In0.50P confining layers

D.L. Murrell; C.P. Seltzer; C J Gibbings; D.J. Elton

An investigation of strained quantum well 0.98 mu m lasers with one, two and three Ga0.80In0.20As wells and Ga0.50In0.50P cladding layers has been carried out. The threshold current density of broad-area lasers exhibited a saturation effect with increasing cavity length, and a logarithmic relationship existed between the gain per well at threshold and the threshold current density per well. This relationship was used in the determination of the variations of total gain with total injection current, which showed that a one-well structure should be best for lasers of suitable length for pumping erbium-doped fibre amplifiers. A low threshold current density of 112 A cm-2 was obtained for a single well laser having a cavity length of 1000 mu m. The performance of broad-area lasers with structures grown at 600 degrees C on a substrate surface tilted at 3 degrees from the (001) exhibited greater thermal sensitivity than that of those grown on the (001). Thus, there seems to be no advantage in the use of off-axis substrates when the angle of tilt is small. Ridge-waveguide lasers were found to be capable of relatively high power output, but mode changes tended to occur at drive currents above 100 mA.


international conference on indium phosphide and related materials | 1991

Properties of facet-coated 1.3 mu m InGaAsP/InP MQW lasers

C.P. Seltzer; M. Bagley; G. Sherlock; D.J. Elton; S.D. Perrin; D.M. Cooper

Multiple quantum well (MQW) external cavity lasers and optical amplifiers operating in the 1.3 mu m optical fiber communications window are described. The device designs and fabrications are discussed. It is demonstrated that MQW devices offer enhanced characteristics when compared with conventional bulk devices. An MQW laser with a single facet coat in an external cavity was measured to have a tuning range of 160 nm from 1.255 mu m to 1.417 mu m. The device had a peak power of over 40 mW at 1.336 mu m, and a side mode suppression ratio of more than 40 dB. An optical amplifier with a length of 500 mu m had a bandwidth of 110 nm, a 18 dB single-pass gain, and saturated output power of 14 dBm (25 mW).<<ETX>>


Electronics Letters | 1991

160 nm continuous tuning of an MQW laser in an external cavity across the entire 1.3 mu m communications window

C.P. Seltzer; M. Bagley; D.J. Elton; S.D. Perrin; D.M. Cooper


Electronics Letters | 1991

Frequency response and differential Gain in strained and unstrained InGaAs/InGaAsP quantum well lasers

M.C. Tatham; C.P. Seltzer; S.D. Perrin; D.M. Cooper


Electronics Letters | 1994

Low threshold current 1.61 mu m InGaAsP/InP tapered active layer multiquantum well laser with improved coupling to cleaved singlemode fibre

I.F. Lealman; C.P. Seltzer; L.J. Rivers; M.J. Harlow; S.D. Perrin


Electronics Letters | 1991

Zero-net-strain multiquantum well lasers

C.P. Seltzer; S.D. Perrin; M.C. Tatham; D.M. Cooper


Electronics Letters | 1990

242 nm continuous tuning from a GRIN-SC-MQW-BH InGaAsP laser in an extended cavity

M. Bagley; R. Wyatt; D.J. Elton; H.J. Wickes; P.C. Spurdens; C.P. Seltzer; D.M. Cooper; W.J. Devlin


Electronics Letters | 1992

Zero-net-strain and conventionally strained InGaAsP/InP multiquantum well lasers

C.P. Seltzer; S.D. Perrin; M.C. Tatham; D.M. Cooper


Electronics Letters | 1989

High-power 1.5 mu m all-MOVPE buried heterostructure graded index separate confinement multiple quantum well lasers

D.M. Cooper; C.P. Seltzer; M. Aylett; D.J. Elton; M.J. Harlow; H.J. Wickes; D.L. Murrell

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