Data from: Hacking the Bell test using classical light in energy-time entanglement–based quantum key distribution

Jogenfors J, Elhassan AM, Ahrens J, Bourennane M, Larsson J

Date Published: December 20, 2015

DOI: http://dx.doi.org/10.5061/dryad.81b74

 

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Title Experimental measurements
Downloaded 16 times
Description These are the measurement results for the faking of the Bell violation in the Franson interferometer. Filenames starting with A are Alice's measurement results. Filenames starting with B are Bob's measurement results. The three last characters of the filename show the settings of the source and analysis station in multiples of pi/4. The first character is the early setting, the middle is the late setting and the last character is the phase shift in the analysis station. The character N stands for no pulse. The data files are counts, each row is one second of data. Each column is one detector (plus or minus). The first half of each file is the early timeslot, the second half is the late timeslot. The detectors used in the experiment are commercial products from Princeton Lightwave. These detectors are InGaAs avalanche photodiodes (APDs) that use Geiger and biased pulse modes at the operating temperature 218 K. The detection wavelength range is 1300 to 1550 nm, giving a maximum detection efficiency of 20 % at 1550 nm. The dark count rate is 5e−5 per nanosecond .
Download Franson experiment.zip (34.50 Kb)
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When using this data, please cite the original publication:

Jogenfors J, Elhassan AM, Ahrens J, Bourennane M, Larsson J (2015) Hacking the Bell test using classical light in energy-time entanglement–based quantum key distribution. Science Advances 1(11): e1500793. http://dx.doi.org/10.1126/sciadv.1500793

Additionally, please cite the Dryad data package:

Jogenfors J, Elhassan AM, Ahrens J, Bourennane M, Larsson J (2015) Data from: Hacking the Bell test using classical light in energy-time entanglement–based quantum key distribution. Dryad Digital Repository. http://dx.doi.org/10.5061/dryad.81b74
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