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[{"model": "core.projectfund", "pk": 28289, "fields": {"project": 5492, "organisation": 4, "amount": 210794, "start_date": "2012-03-01", "end_date": "2013-05-30", "raw_data": 47316}}]
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[{"model": "core.projectfund", "pk": 20407, "fields": {"project": 5492, "organisation": 4, "amount": 210794, "start_date": "2012-03-01", "end_date": "2013-05-30", "raw_data": 25655}}]
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[{"model": "core.projectorganisation", "pk": 77356, "fields": {"project": 5492, "organisation": 7144, "role": "LEAD_ORG"}}]
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{"title": ["", ""ULTRAPOD" - ULTRAfast fibre laser technology delivering Pulses On Demand"], "description": ["", "\nAdvanced materials processing applications and biomedical imaging techniques are becoming\nreliant on the benefits offered by ultrafast (ultra-short pulse) fibre laser technology. The\nultimate requirement for many of these applications is to be able to deliver individual high\nintensity pulses, on demand, to the work surface. Limitations in performance of ultrafast laser\ntechnology and laser modulation components means that it is impossible to deliver high\nenergy pulses on demand at repetition rates much in excess of 1MHz.\nFor some applications such as writing an image directly to a printing plate, time limitations\nrequire that pulses are applied to the surface at a rate of up to 80MHz (80 million pulses per\nsecond). However, with every pulse corresponding to an individual pixel of the image, the\nlaser must have the capability of being switched on and off at up to 80MHz (less than 10\nnanosecond switching time). This must also be achieved when the laser is delivering up to\n100-Watts of average optical power.\nULTRAPOD is inspired by Fianium patent applications for novel fibre laser architectures.\nThe technology is designed to eradicate the limitations of existing technology and permit fibre\nlasers to be modulated on-demand at speeds of more than 80Mhz. The technology has\napplication not only for ultrafast pulses but for continuous wave operation as well, enabling\nkilowatt fibre lasers to be directly modulated within timescales of 10 nanoseconds.\nULTRAPOD will focus on the delivery of two separate prototype laser systems\ndemonstrating, 1)high energy pulses on demand for high speed (tens of MHz) materials\nprocessing and 2)Supercontinuum (white light laser) pulses on demand for advanced\nfluorescence lifetime imaging.\nSuccessful delivery of these prototypes will present a fantastic opportunity to further exploit\nthe rapidly expanding global market for industrial and scientific laser technology to the\nbenefit of UK companies and the wider UK economy.\n\n"], "extra_text": ["", "\n\n\n\n"], "status": ["", "Closed"]}
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{"external_links": [20450]}
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[{"model": "core.project", "pk": 5492, "fields": {"owner": null, "is_locked": false, "coped_id": "e3e87398-1e90-474e-b666-ff6aef6e7339", "title": "", "description": "", "extra_text": "", "status": "", "start": null, "end": null, "raw_data": 25639, "created": "2022-04-11T01:41:00.464Z", "modified": "2022-04-11T01:41:00.464Z", "external_links": []}}]
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