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@icgoodfind113.bsky.socialOct 9, 2026, 10:34 AM

US DoD Plans $1.5B Loan for Bankrupted Chip Firm!#SiliconCarbide #Wolfspeed #ThirdGenSemiconductor #WideBandgapSemiconductor #ChipSupplyChain
#ICGOODFIND

@theinnovation.bsky.socialSep 26, 2026, 3:47 AM

This study resolved the long-standing structural ambiguity surrounding the PL5 and PL6 centers in 4H-SiC, assigning PL5 and PL6 to the basal and axial configurations of the OCVSi complex, respectively.
doi.org/10.59717/j.t...
#physics #siliconcarbide

@informaq.bsky.socialSep 24, 2026, 2:59 AM

Demonstrated scalable method for deterministically integrating silicon carbide color centers into nanopillars with up to 10× photon count rate enhancement while preserving spin coherence, advancing quantum sensing and communication platforms.

#QuantumSensing #SiliconCarbide #Nanophotonics

@tejashreekanake.bsky.socialSep 22, 2026, 9:17 AM

Compound Semiconductor Market Size, Share | Report [2035] www.marketresearchfuture.com/reports/comp...
#CompoundSemiconductor #CompoundSemiconductors #SemiconductorMarket #SemiconductorIndustry #Semiconductors #Chips #WideBandgap #SiliconCarbide

@mengli512.bsky.socialSep 22, 2026, 8:48 AM

Is Power Integrations a sustainable long-term investment, or are current market expectations disconnected from the company financials?

#POWI #ai #datacenter #siliconcarbide #gallium $POWI $ON $NVTS

youtu.be/_FJxjFZfRkA

@informaq.bsky.socialSep 16, 2026, 12:33 PM

Demonstrates coherent transfer of entanglement from electron spins to nuclear-spin memory in SiC, extending entanglement lifetime by 240× at room temperature with 92.5% fidelity—enabling scalable quantum sensing and information processing.

#QuantumHardware #SiliconCarbide #Research

@informaq.bsky.socialSep 10, 2026, 4:30 PM

Researchers achieved stable two-photon interference using silicon vacancy centres in commercial silicon carbide, requiring calibration only every 8.4 hours. This long-term stability is crucial for building practical distributed quantum networks.

#QuantumNetworking #SiliconCarbide #News

@informaq.bsky.socialSep 10, 2026, 1:31 PM

UTS researchers engineered a monolithic silicon carbide metalens simultaneously collecting light at 860nm and 1240nm from nitrogen and silicon vacancy defects, enabling compact quantum photonic systems without separate optics.

#QuantumPhotonics #SiliconCarbide #Metalens