Object ranging and sensing by temporal cross-correlation measurement

Title Object ranging and sensing by temporal cross-correlation measurement
Author Kuniyil, Hashir Puthiyapurayil, Jam, Naser Chamani, Durak, Kadir
Publication Date: 2020
Publication Place - SPIE
Subject Lidar, Quantum cross-correlation, Radar, Temporal correlation
Type Document
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 978-151063861-7
Record ID e8276bd2-1013-47fc-9d25-c4ca916cb59e
Library Location Electrical & Electronics Engineering
Date 2020
Notes TÜBİTAK
Sample Text We present a novel method to measure the range of an object in a lab setting. This is realised by utilizing the phase insensitive cross-correlation analysis of the probe and reference photons generated in a spontaneous parametric down-conversion process. In our technique, the comparative measurement of time-correlated photons after one is transmitted to the target direction and the copy of it retained at the lab allows to single out the signal from the noise lead to sense, range and imaging the sample.
Editör Kimata, M., Shaw, J. A., Valenta, C. R.
DOI 10.1117/12.2579566
Cilt 11525
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Object ranging and sensing by temporal cross-correlation measurement

Author Kuniyil, Hashir Puthiyapurayil, Jam, Naser Chamani, Durak, Kadir
Publication Date 2020
Publication Place - SPIE
Subject Lidar, Quantum cross-correlation, Radar, Temporal correlation
Type Document
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 978-151063861-7
Record ID e8276bd2-1013-47fc-9d25-c4ca916cb59e
Library Location Electrical & Electronics Engineering
Date 2020
Notes TÜBİTAK
Sample Text We present a novel method to measure the range of an object in a lab setting. This is realised by utilizing the phase insensitive cross-correlation analysis of the probe and reference photons generated in a spontaneous parametric down-conversion process. In our technique, the comparative measurement of time-correlated photons after one is transmitted to the target direction and the copy of it retained at the lab allows to single out the signal from the noise lead to sense, range and imaging the sample.
Editör Kimata, M., Shaw, J. A., Valenta, C. R.
DOI 10.1117/12.2579566
Cilt 11525
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