Semiconductor Laser with Optical Feedback - Bulk - 4GHz Detection BW - Optical Spectra
Data and Resources
-
downloadHTML
Provides individual links to download files
-
metadataJSON
Metadata for Semiconductor Laser with Optical Feedback - Bulk - 4GHz...
-
manifest
Manifest for resource Semiconductor Laser with Optical Feedback - Bulk - 4GHz...
Additional Info
Field | Value |
---|---|
Author | Joshua P. Toomey |
Maintainer | Dr Joshua P Toomey, MQ Photonics Research Centre, Dept of Physics and Astronomy, Macquarie University |
Version | 1.0 |
data_type | Time Series, Optical Spectra |
detailed_info | This data is being provided to be used in the context of the SIEF project 'Big Data Knowledge Discovery'. Any use of this data should cite the following reference: J. P. Toomey and D. M. Kane, 'Mapping the dynamic complexity of a semiconductor laser with optical feedback using permutation entropy,' Optics Express 22 (2), 1713-1725 (2014). This data set was recorded from an experimental semiconductor laser subject to optical feedback on 14/09/12. Laser wavelength ~ 830nm. External cavity round trip time 4.5ns. During the experiment, 2 system parameters were varied: the optical feedback level and laser injection current. - Optical feedback was varied by changing the RF power to an acousto-optic modulator (AOM) which varies the amount of laser power transmitted in the 0th order beam. A voltage between 0V-1V corresponds to maximum transmission (0V) and minimum transmission (1V). The actual power transmitted by the AOM is not a linear relationship with voltage. Relative feedback level can be approximated from the reduction in laser threshold. - Laser injection is controlled by directly varying the current supply to the device (Profile ITC510 Laser Diode Combi-controller). Laser was held at a constant 25C. The dataset contains 123,201 files containing output power time series recorded from the laser using a fast photodiode (Discovery Semiconductors DCS30S 22GHz) and 4GHz realtime oscilloscope (Agilent 54854A) and optical spectra recorded on an Anritsu MS9710C with 0.1nm resoltuion and 1kHz VBW for different settings of: - Injection (351 values = 35mA to 70mA in 0.1mA steps) - Feedback (351 values from 0.2V to 0.9V in 0.002V steps) The filenames consist of the AOM and INJ values at which the data was recorded: e.g. AOM_0.642V_INJ_45.2mA.h5 : feedback = 0.642 V, injection = 45 mA These values are also recorded in the file attributes as 'var1' and 'var2'. Each hdf5 file consist of a 2 datasets called 'TimeSeries' and 'OpticalSpectrum'. TimeSeries contains a time series of amplitude values measured as the voltage across the 50ohm oscilloscope input. Time series were sampled at 20GSamples/s (50ps per data point) and contain 20,000pts for a total record length of 1microsecond. OpticalSpectrum contains a single spectrum containing 1001 sample points between 825nm and 840nm. |
link | http://research.science.mq.edu.au/photonics-dynamical-systems/our-research/semiconductor-lasers-with-optical-feedback/bulk-optic-4-ghz-bw-osa/ |
reference | J. P. Toomey and D. M. Kane, 'Mapping the dynamic complexity of a semiconductor laser with optical feedback using permutation entropy,' Optics Express 22 (2), 1713-1725 (2014). |