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BEGIN:VEVENT
UID:20261003T032010Z - 79241@eupp208
DTSTART;TZID=Canada/Eastern:20261028T140000
DTEND;TZID=Canada/Eastern:20261028T150000
CREATED:20261003T032010Z
DESCRIPTION:<a href="https://www.lucedaphotonics.com/event/beyond-silicon-s
 calable-bto-on-silicon-foundry-ready-crystalline-oxide-wafers-for-next-gen
 eration-electro-optic-links-196/register">Beyond Silicon: Scalable BTO on 
 Silicon: Foundry-Ready Crystalline Oxide Wafers for Next-Generation Electr
 o-Optic Links</a>\nSpeaker Moderators Dr. Alexander Demkov CEO & Co-Founde
 r at La Luce Cristallina Dr. Dawson Bonneville Account Manager ​at Luced
 a Photonics Dr. Kevin McComber CEO & Co-Founder at Spark Photonics As data
  centers\, AI clusters\, and telecom networks demand faster speeds and low
 er power consumption\, traditional silicon photonics is hitting its physic
 al limits. The solution may lie in a new wave of advanced materials. Join 
 us for Luceda's webinar series\, where we'll focus on advanced photonic mo
 dulation materials and the innovative companies bringing them to market. A
 t the forefront of photonic modulation\, we’re sitting down with industr
 y leaders working with advanced electro-optic materials\, from Thin-Film L
 ithium Niobate (TFLN) to cutting-edge polymers and plasmonics\, to explore
  how they are pushing the boundaries of bandwidth\, footprint\, and energy
  efficiency. In our third session\, we welcome La Luce Cristallina\, a lea
 der in scalable Barium Titanate (BTO) photonics. As compute-intensive AI c
 lusters and hyperscale network fabrics accelerate toward multi-terabit ban
 dwidths\, traditional silicon photonics platforms face fundamental electro
 -optic limits in modulation efficiency and drive voltage. This presentatio
 n details how La Luce Cristallina deposits high-quality BTO via a scalable
  sputtering process directly onto standard silicon wafers\, unlocking an u
 ltra-strong Pockels effect while avoiding the throughput constraints of co
 nventional epitaxy. Attendees will gain insight into wafer-scale sputterin
 g material properties\, foundry-ready supply chains\, and practical commer
 cial roadmaps for BTO-on-silicon substrates to fabricate and scale PIC des
 igns. In this webinar\, you'll: Learn about the unique advantages of emerg
 ing modulation materials and how they overcome current PIC bottlenecks.Exp
 lore how these materials are being successfully integrated into commercial
  foundry [...]
DTSTAMP:20261003T032010Z
LOCATION:Online event
SUMMARY:Beyond Silicon: Scalable BTO on Silicon: Foundry-Ready Crystalline 
 Oxide Wafers for Next-Generation Electro-Optic Links
X-ALT-DESC;FMTTYPE=text/html:<a href="https://www.lucedaphotonics.com/event
 /beyond-silicon-scalable-bto-on-silicon-foundry-ready-crystalline-oxide-wa
 fers-for-next-generation-electro-optic-links-196/register">Beyond Silicon:
  Scalable BTO on Silicon: Foundry-Ready Crystalline Oxide Wafers for Next-
 Generation Electro-Optic Links</a>\nSpeaker Moderators Dr. Alexander Demko
 v CEO & Co-Founder at La Luce Cristallina Dr. Dawson Bonneville Account Ma
 nager ​at Luceda Photonics Dr. Kevin McComber CEO & Co-Founder at Spark 
 Photonics As data centers\, AI clusters\, and telecom networks demand fast
 er speeds and lower power consumption\, traditional silicon photonics is h
 itting its physical limits. The solution may lie in a new wave of advanced
  materials. Join us for Luceda's webinar series\, where we'll focus on adv
 anced photonic modulation materials and the innovative companies bringing 
 them to market. At the forefront of photonic modulation\, we’re sitting 
 down with industry leaders working with advanced electro-optic materials\,
  from Thin-Film Lithium Niobate (TFLN) to cutting-edge polymers and plasmo
 nics\, to explore how they are pushing the boundaries of bandwidth\, footp
 rint\, and energy efficiency. In our third session\, we welcome La Luce Cr
 istallina\, a leader in scalable Barium Titanate (BTO) photonics. As compu
 te-intensive AI clusters and hyperscale network fabrics accelerate toward 
 multi-terabit bandwidths\, traditional silicon photonics platforms face fu
 ndamental electro-optic limits in modulation efficiency and drive voltage.
  This presentation details how La Luce Cristallina deposits high-quality B
 TO via a scalable sputtering process directly onto standard silicon wafers
 \, unlocking an ultra-strong Pockels effect while avoiding the throughput 
 constraints of conventional epitaxy. Attendees will gain insight into wafe
 r-scale sputtering material properties\, foundry-ready supply chains\, and
  practical commercial roadmaps for BTO-on-silicon substrates to fabricate 
 and scale PIC designs. In this webinar\, you'll: Learn about the unique ad
 vantages of emerging modulation materials and how they overcome current PI
 C bottlenecks.Explore how these materials are being successfully integrate
 d into commercial foundry [...]
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