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DTSTART;TZID=Europe/Zurich:20260702T190000
DTEND;TZID=Europe/Zurich:20260702T203000
DTSTAMP:20260608T074856Z
CREATED:20260608T074856Z
LAST-MODIFIED:20260608T074856Z
UID:18608-1783018800-1783024200@espace.epfl.ch
SUMMARY:Comment le JWST change notre vision de l'histoire de l'univers
DESCRIPTION:Programmable Photonic Integrated Circuits provide mutability and versatility to optical networks. The ability to implement non-volatile mechanisms onto a standard platform is instrumental in providing zero-energy consumption during the exploitation of a programmed configuration. In this talk\, we will see the advancements and challenges of two of the most advanced strategies of endowing the highly standardized silicon photonic platform with non-volatility: Micro Electro-Mechanical Systems (MEMS) and Phase Change Materials (PCM). We will see the work performed at EPFL in order to mature these two technologies with a focus on scalable fabrication. \nHernán Furci is a scientist in Photonics and Nanotechnologies at EPFL. With early career background in Nuclear Engineering and Heat Transfer\, he completed a PhD in Low Temperature Applied Physics at the University of Paris-Saclay in 2015. Subsequently\, he joined CERN\, where he developed micro-engineered superconducting thin film thermometry for sub-2K superfluid helium systems. His passion for microfabrication led him to joining Prof. Quack’s Photonics Group at EPFL in 2019. Since then\, he has conducted research and development in nanotechnology\, both in the fields of superconducting thin film sensors (SNF Ambizione grant) and integrated photonics (ESA-funded projects). The latter research targets the seamless integration with high-volume-compatible fabrication techniques of non-volatile mechanisms onto standard photonic platforms\, aiming at offering a landscape of ultra-low power programmable photonics.
URL:https://espace.epfl.ch/event/comment-le-jwst-change-notre-vision-de-lhistoire-de-lunivers/
LOCATION:Swisstech Convention Center\, Quartier Nord EPFL\, Route Louis-Favre 2\, Ecublens\, Vaud\, 1024\, Switzerland
CATEGORIES:Conference
ATTACH;FMTTYPE=image/jpeg:https://espace.epfl.ch/wp-content/uploads/2026/06/1440x810-1.jpg
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DTSTART;TZID=Europe/Zurich:20260822T140000
DTEND;TZID=Europe/Zurich:20260822T233000
DTSTAMP:20260622T081639Z
CREATED:20260622T081639Z
LAST-MODIFIED:20260622T081639Z
UID:18692-1787407200-1787441400@espace.epfl.ch
SUMMARY:Féérie d'une nuit - 20e édition
DESCRIPTION:Programmable Photonic Integrated Circuits provide mutability and versatility to optical networks. The ability to implement non-volatile mechanisms onto a standard platform is instrumental in providing zero-energy consumption during the exploitation of a programmed configuration. In this talk\, we will see the advancements and challenges of two of the most advanced strategies of endowing the highly standardized silicon photonic platform with non-volatility: Micro Electro-Mechanical Systems (MEMS) and Phase Change Materials (PCM). We will see the work performed at EPFL in order to mature these two technologies with a focus on scalable fabrication. \nHernán Furci is a scientist in Photonics and Nanotechnologies at EPFL. With early career background in Nuclear Engineering and Heat Transfer\, he completed a PhD in Low Temperature Applied Physics at the University of Paris-Saclay in 2015. Subsequently\, he joined CERN\, where he developed micro-engineered superconducting thin film thermometry for sub-2K superfluid helium systems. His passion for microfabrication led him to joining Prof. Quack’s Photonics Group at EPFL in 2019. Since then\, he has conducted research and development in nanotechnology\, both in the fields of superconducting thin film sensors (SNF Ambizione grant) and integrated photonics (ESA-funded projects). The latter research targets the seamless integration with high-volume-compatible fabrication techniques of non-volatile mechanisms onto standard photonic platforms\, aiming at offering a landscape of ultra-low power programmable photonics.
URL:https://espace.epfl.ch/event/feerie-dune-nuit-20e-edition/
LOCATION:Combremont-le-Petit
CATEGORIES:Conference,Show/Spectacle
ATTACH;FMTTYPE=image/jpeg:https://espace.epfl.ch/wp-content/uploads/2026/06/affiche_2026-725x1024-1-e1782115220345.jpg
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BEGIN:VEVENT
DTSTART;TZID=Europe/Zurich:20260825T183000
DTEND;TZID=Europe/Zurich:20260825T201500
DTSTAMP:20260608T075518Z
CREATED:20260608T075518Z
LAST-MODIFIED:20260608T075518Z
UID:18615-1787682600-1787688900@espace.epfl.ch
SUMMARY:The exoplanet revolution and life in the Universe - Public Lecture & Panel Discussion
DESCRIPTION:Programmable Photonic Integrated Circuits provide mutability and versatility to optical networks. The ability to implement non-volatile mechanisms onto a standard platform is instrumental in providing zero-energy consumption during the exploitation of a programmed configuration. In this talk\, we will see the advancements and challenges of two of the most advanced strategies of endowing the highly standardized silicon photonic platform with non-volatility: Micro Electro-Mechanical Systems (MEMS) and Phase Change Materials (PCM). We will see the work performed at EPFL in order to mature these two technologies with a focus on scalable fabrication. \nHernán Furci is a scientist in Photonics and Nanotechnologies at EPFL. With early career background in Nuclear Engineering and Heat Transfer\, he completed a PhD in Low Temperature Applied Physics at the University of Paris-Saclay in 2015. Subsequently\, he joined CERN\, where he developed micro-engineered superconducting thin film thermometry for sub-2K superfluid helium systems. His passion for microfabrication led him to joining Prof. Quack’s Photonics Group at EPFL in 2019. Since then\, he has conducted research and development in nanotechnology\, both in the fields of superconducting thin film sensors (SNF Ambizione grant) and integrated photonics (ESA-funded projects). The latter research targets the seamless integration with high-volume-compatible fabrication techniques of non-volatile mechanisms onto standard photonic platforms\, aiming at offering a landscape of ultra-low power programmable photonics.
URL:https://espace.epfl.ch/event/the-exoplanet-revolution-and-life-in-the-universe-public-lecture-panel-discussion/
LOCATION:EPFL CE 1 6
CATEGORIES:Conference,Round Table
ATTACH;FMTTYPE=image/jpeg:https://espace.epfl.ch/wp-content/uploads/2026/06/1440x810-2.jpg
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BEGIN:VEVENT
DTSTART;TZID=Europe/Zurich:20260922T133000
DTEND;TZID=Europe/Zurich:20260922T180000
DTSTAMP:20260623T141505Z
CREATED:20260623T141113Z
LAST-MODIFIED:20260623T141505Z
UID:18705-1790083800-1790100000@espace.epfl.ch
SUMMARY:Journées de la Technique 2026
DESCRIPTION:Programmable Photonic Integrated Circuits provide mutability and versatility to optical networks. The ability to implement non-volatile mechanisms onto a standard platform is instrumental in providing zero-energy consumption during the exploitation of a programmed configuration. In this talk\, we will see the advancements and challenges of two of the most advanced strategies of endowing the highly standardized silicon photonic platform with non-volatility: Micro Electro-Mechanical Systems (MEMS) and Phase Change Materials (PCM). We will see the work performed at EPFL in order to mature these two technologies with a focus on scalable fabrication. \nHernán Furci is a scientist in Photonics and Nanotechnologies at EPFL. With early career background in Nuclear Engineering and Heat Transfer\, he completed a PhD in Low Temperature Applied Physics at the University of Paris-Saclay in 2015. Subsequently\, he joined CERN\, where he developed micro-engineered superconducting thin film thermometry for sub-2K superfluid helium systems. His passion for microfabrication led him to joining Prof. Quack’s Photonics Group at EPFL in 2019. Since then\, he has conducted research and development in nanotechnology\, both in the fields of superconducting thin film sensors (SNF Ambizione grant) and integrated photonics (ESA-funded projects). The latter research targets the seamless integration with high-volume-compatible fabrication techniques of non-volatile mechanisms onto standard photonic platforms\, aiming at offering a landscape of ultra-low power programmable photonics.
URL:https://espace.epfl.ch/event/journees-de-la-technique-2026/
LOCATION:Palais de Rumine\, Place de la Riponne 6\, Lausanne\, VD\, 1005\, Switzerland
CATEGORIES:Conference,Round Table
ATTACH;FMTTYPE=image/png:https://espace.epfl.ch/wp-content/uploads/2026/06/Screenshot-2026-06-23-155943.png
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BEGIN:VEVENT
DTSTART;VALUE=DATE:20261005
DTEND;VALUE=DATE:20261010
DTSTAMP:20260608T114031Z
CREATED:20260608T114031Z
LAST-MODIFIED:20260608T114031Z
UID:18622-1791158400-1791590399@espace.epfl.ch
SUMMARY:77th International Astronautical Congress (IAC) | Antalya\, Türkiye
DESCRIPTION:Programmable Photonic Integrated Circuits provide mutability and versatility to optical networks. The ability to implement non-volatile mechanisms onto a standard platform is instrumental in providing zero-energy consumption during the exploitation of a programmed configuration. In this talk\, we will see the advancements and challenges of two of the most advanced strategies of endowing the highly standardized silicon photonic platform with non-volatility: Micro Electro-Mechanical Systems (MEMS) and Phase Change Materials (PCM). We will see the work performed at EPFL in order to mature these two technologies with a focus on scalable fabrication. \nHernán Furci is a scientist in Photonics and Nanotechnologies at EPFL. With early career background in Nuclear Engineering and Heat Transfer\, he completed a PhD in Low Temperature Applied Physics at the University of Paris-Saclay in 2015. Subsequently\, he joined CERN\, where he developed micro-engineered superconducting thin film thermometry for sub-2K superfluid helium systems. His passion for microfabrication led him to joining Prof. Quack’s Photonics Group at EPFL in 2019. Since then\, he has conducted research and development in nanotechnology\, both in the fields of superconducting thin film sensors (SNF Ambizione grant) and integrated photonics (ESA-funded projects). The latter research targets the seamless integration with high-volume-compatible fabrication techniques of non-volatile mechanisms onto standard photonic platforms\, aiming at offering a landscape of ultra-low power programmable photonics.
URL:https://espace.epfl.ch/event/77th-international-astronautical-congress-iac-antalya-turkiye/
CATEGORIES:Conference
ATTACH;FMTTYPE=image/png:https://espace.epfl.ch/wp-content/uploads/2026/06/banner-IAC-2026.png
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BEGIN:VEVENT
DTSTART;VALUE=DATE:20270628
DTEND;VALUE=DATE:20270703
DTSTAMP:20260427T115213Z
CREATED:20260304T083340Z
LAST-MODIFIED:20260427T115213Z
UID:18308-1814140800-1814572799@espace.epfl.ch
SUMMARY:EUCASS 2027
DESCRIPTION:Programmable Photonic Integrated Circuits provide mutability and versatility to optical networks. The ability to implement non-volatile mechanisms onto a standard platform is instrumental in providing zero-energy consumption during the exploitation of a programmed configuration. In this talk\, we will see the advancements and challenges of two of the most advanced strategies of endowing the highly standardized silicon photonic platform with non-volatility: Micro Electro-Mechanical Systems (MEMS) and Phase Change Materials (PCM). We will see the work performed at EPFL in order to mature these two technologies with a focus on scalable fabrication. \nHernán Furci is a scientist in Photonics and Nanotechnologies at EPFL. With early career background in Nuclear Engineering and Heat Transfer\, he completed a PhD in Low Temperature Applied Physics at the University of Paris-Saclay in 2015. Subsequently\, he joined CERN\, where he developed micro-engineered superconducting thin film thermometry for sub-2K superfluid helium systems. His passion for microfabrication led him to joining Prof. Quack’s Photonics Group at EPFL in 2019. Since then\, he has conducted research and development in nanotechnology\, both in the fields of superconducting thin film sensors (SNF Ambizione grant) and integrated photonics (ESA-funded projects). The latter research targets the seamless integration with high-volume-compatible fabrication techniques of non-volatile mechanisms onto standard photonic platforms\, aiming at offering a landscape of ultra-low power programmable photonics.
URL:https://espace.epfl.ch/event/eucass-2027/
LOCATION:Scottish Event Campus\,Glasgow\, Scottish Event Campus\, Glasgow\, United Kingdom
CATEGORIES:Conference
ATTACH;FMTTYPE=image/jpeg:https://espace.epfl.ch/wp-content/uploads/2026/03/eucass27.jpg
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