Reconfigurable repetition rate in colliding-pulse mode locked lasers with non-absorbing mirrors

In this work we investigate the mode-locking (ML) operation of a multiple colliding pulse mode locked (MCPM) laser with multiple saturable absorbers (SA) placed in the 3.7mm long cavity. The 830nm laser material we use is a GaAs/AlχGaι.χAs double quantum well (QW) graded-index separate confinement h...

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Main Authors: Tandoi, G., Ironside, Charlie, Bryce, A.
Format: Conference Paper
Published: 2011
Online Access:http://hdl.handle.net/20.500.11937/35454
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author Tandoi, G.
Ironside, Charlie
Bryce, A.
author_facet Tandoi, G.
Ironside, Charlie
Bryce, A.
author_sort Tandoi, G.
building Curtin Institutional Repository
collection Online Access
description In this work we investigate the mode-locking (ML) operation of a multiple colliding pulse mode locked (MCPM) laser with multiple saturable absorbers (SA) placed in the 3.7mm long cavity. The 830nm laser material we use is a GaAs/AlχGaι.χAs double quantum well (QW) graded-index separate confinement heterostructure (GRINSCH), with an epitaxial design similar to the one reported. The 148μm long SAs are placed at %, ιΛ and 3A of the laser length, allowing the selection of the harmonic of the round trip frequency (~10GHz). Sputtering-induced disordering (SID) quantum well intermixing (QWI) is used to integrate non-absorbing mirrors (NAM) in the cavity, as they improve the output power limit due to cathastrophic optical mirror damage (COMD). The 2nd (~20GHz) or the 4th (~40GHz) harmonics of the round-trip frequency are selected when the SA2 or the SA3 are reverse biased, respectively. On the other hand, no ML operation is observed when two SAs are reverse biased at the same time, preventing the selection of the 3rd harmonic. The intensity autocorrelation traces relative to the 20 and 40GHz ML regimes are shown.
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institution Curtin University Malaysia
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last_indexed 2025-11-14T08:41:25Z
publishDate 2011
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spelling curtin-20.500.11937-354542017-09-13T15:20:31Z Reconfigurable repetition rate in colliding-pulse mode locked lasers with non-absorbing mirrors Tandoi, G. Ironside, Charlie Bryce, A. In this work we investigate the mode-locking (ML) operation of a multiple colliding pulse mode locked (MCPM) laser with multiple saturable absorbers (SA) placed in the 3.7mm long cavity. The 830nm laser material we use is a GaAs/AlχGaι.χAs double quantum well (QW) graded-index separate confinement heterostructure (GRINSCH), with an epitaxial design similar to the one reported. The 148μm long SAs are placed at %, ιΛ and 3A of the laser length, allowing the selection of the harmonic of the round trip frequency (~10GHz). Sputtering-induced disordering (SID) quantum well intermixing (QWI) is used to integrate non-absorbing mirrors (NAM) in the cavity, as they improve the output power limit due to cathastrophic optical mirror damage (COMD). The 2nd (~20GHz) or the 4th (~40GHz) harmonics of the round-trip frequency are selected when the SA2 or the SA3 are reverse biased, respectively. On the other hand, no ML operation is observed when two SAs are reverse biased at the same time, preventing the selection of the 3rd harmonic. The intensity autocorrelation traces relative to the 20 and 40GHz ML regimes are shown. 2011 Conference Paper http://hdl.handle.net/20.500.11937/35454 10.1109/CLEOE.2011.5942611 restricted
spellingShingle Tandoi, G.
Ironside, Charlie
Bryce, A.
Reconfigurable repetition rate in colliding-pulse mode locked lasers with non-absorbing mirrors
title Reconfigurable repetition rate in colliding-pulse mode locked lasers with non-absorbing mirrors
title_full Reconfigurable repetition rate in colliding-pulse mode locked lasers with non-absorbing mirrors
title_fullStr Reconfigurable repetition rate in colliding-pulse mode locked lasers with non-absorbing mirrors
title_full_unstemmed Reconfigurable repetition rate in colliding-pulse mode locked lasers with non-absorbing mirrors
title_short Reconfigurable repetition rate in colliding-pulse mode locked lasers with non-absorbing mirrors
title_sort reconfigurable repetition rate in colliding-pulse mode locked lasers with non-absorbing mirrors
url http://hdl.handle.net/20.500.11937/35454