#QuantumDevices
Hello from the #NanoFrazor Team!
Following up on the episode with Elisa Rideo of @RiedoLab, we are excited to discuss #nanofabrication highlights from the NanoFrazor user community this week.
#nanotechnology #tspl #nanomaterials #2Dmaterials #nanoelectronics #quantumdevices #nanosensors
November 11, 2024 at 9:00 AM
🧩 Advancements in #2Dmagnets could lead to breakthroughs in #quantumdevices, enabling the development of robust and versatile platforms for #quantumcomputing, communication and sensing.

📖 Read our latest topical review: shorturl.at/lH4BZ

✨ Part of our #MQT #WomeninMaterialsforQuantum collection!
April 16, 2025 at 7:01 AM
📍 Room-temp quantum devices with atomic precision!

💎 New perspective in #MQT from #QuantumBrilliance outlines a bottom-up approach to scalable, diamond-based #quantumdevices fabrication using hydrogen depassivation lithography.

🔗 iopscience.iop.org/article/10.1...

#NVcentre #Diamond #IOPP
August 1, 2025 at 5:04 PM
This award, supported by ICMBE2026, recognizes exceptional contributions to molecular beam epitaxy by researchers under 40. Prof. Ahmadi is a deserving honoree and we couldn't be prouder. 💛💙

#UCSB #MBE #WideBandgap #PowerElectronics #QuantumDevices #MaterialsScience
June 4, 2026 at 7:07 PM
February 20, 2026 at 4:46 PM
In this great #MachineLearningScienceandTechnology paper, Setty, Abdusalamov, and Motzoi tackle #differentialequations via self-adaptive, physics-informed #quantumML, a promising step to their near-term evaluation on #quantumdevices.

Read the article here: iopscience.iop.org/article/10.1...
April 18, 2025 at 6:22 PM
🧊 From @ox.ac.uk & @diamondlightsource.bsky.social team in #MQT!

⚛️ Atomic-level characterization shows how oxide & carbon contamination at interfaces in #superconducting #quantumcircuits drive decoherence, limiting #quantumdevices performance.

📍 iopscience.iop.org/article/10.1088/2633-4356/aded66
August 6, 2025 at 9:32 AM
New analytical framework connects CMOS transistor geometry to quantum spin behavior through electrostatics and many-body theory. Validated experimentally for silicon quantum dots with 2-17 electrons, enabling design-technology co-optimization for qubits.

#SiliconQubits #QuantumDevices #Research
Electrostatic-to-Spin Framework for CMOS Quantum Devices
arxiv.org
July 7, 2026 at 3:07 PM
Demonstrated exceptional peak-to-valley ratio (PVR=178 at 4K, 24 at 300K) in monolayer MoS₂ double-barrier resonant tunneling devices with valley-selective transport, enabling gate-tunable spin-valley qubit operation at deep cryogenic temperatures.

#SpinValleyQubits #QuantumDevices #Research
Valley-Selective Resonant Tunneling in Monolayer MoS₂ Quantum Wells
arxiv.org
May 5, 2026 at 5:37 AM
A first-of-its-kind image may suggest new ways to use #silicon defects in #QuantumDevices. In PNAS Journal Club: www.pnas.org/post/journal...

#QuantumComputing #Qbit #STM #semiconductor #QuantumMechanics
September 29, 2025 at 5:18 PM
FREE e-Talks by the AVS Thin Film Division: avs.swoogo.com/avsetalks2026 4/28, Ekta Bhatia, NY Creates, Enabling Scalable Superconducting Quantum Devices with 300 mm Wafer Processes & 5/13, Russ Renzas, Univ of Nevada Reno, ALE for Better Quantum Device Performance #ALEtch #QuantumDevices #ThinFilm
AVS e-Talks 2026
It's Time for 2026 e-Talks: Hosted by the AVS Thin Films Division All AVS e-Talks are geared toward a general technical audience, including academic and industrial researchers, technologists, policy-m...
avs.swoogo.com
March 17, 2026 at 6:58 PM
The Amazing #Mathematical #Mind of #JohannSebastianBach : Medium

#Researchers make air-stable, #Ultrathin #Superconductors, for more scalable #QuantumDevices : MIT

A New #Solar 'Switch-Off' #Signal Could Help #Predict #Future #SpaceWeather : Disc Mag

knowledgezone.co.in/resources/bo...
September 2, 2026 at 6:27 AM
Developed integrated device-level simulation framework combining electronic-structure calculations with Lindblad master-equation dynamics to quantify photon-induced damping of electrically driven hole-spin Rabi oscillations in GaAs quantum dots.

#SpinQubits #QuantumDevices #Research
Quantum-Device Simulation of Optical Decoherence in Hole-Spin Qubits
arxiv.org
August 11, 2026 at 9:03 AM
⚡️Even the world’s most sensitive nanoresonators lose energy if placed too close to dielectrics. Static charges create hidden friction - a major design limit for next-gen quantum sensors.
Read more: www.azonano.com/news.aspx?ne... #NanoTech #QuantumDevices
Nearby Dielectrics Drain Energy From Ultracoherent Nanoresonators
Researchers showed that nearby dielectric materials can drain energy from ultracoherent nanomechanical resonators without physical contact. Static charges on or in these tiny devices trigger non-conta...
www.azonano.com
July 9, 2026 at 12:54 AM
Magnetic dipole-dipole interactions and electric fields enable precise control of skyrmion helicity in centrosymmetric materials. Zero-field skyrmion phases emerge with continuous tuning capabilities for quantum device applications.

#MagneticSkyrmions #QuantumDevices #Research
Controlling Skyrmion Phases via Magnetic Dipole Interactions and Electric Fields
arxiv.org
July 8, 2026 at 1:31 AM
At the Henry Royce Institute National Conference 2025, Dr Saptarsi Ghosh will present a fascinating talk titled:

Dr Ghosh brings a deep, physics-led approach to semiconductor research.

#RoyceConference2025 #Semiconductors #MaterialsInnovation #QuantumDevices #RoyceAtImperial #OurImperial
August 20, 2025 at 10:02 AM
Quantum squeezing conditionally amplifies dissipation-induced nonreciprocal coupling by orders of magnitude, enabling enhanced quantum battery charging and optical isolation—but the enhancement is configuration-dependent.

#QuantumOptics #QuantumDevices #Research
Squeezing-Enhanced Dissipative Nonreciprocity in Coupled Cavity Systems
arxiv.org
July 2, 2026 at 6:00 AM
Leading quantum researchers present latest developments in atomic-scale devices and platforms on May 13. Discover advances in fabrication, control, and scalable quantum technology implementation.

#QuantumDevices #AtomicScale #News
Atomic-Scale Quantum Devices and Platforms Webinar
iq.fp2.dev
April 18, 2026 at 11:05 PM
See our work on quantum batteries! We shown that fluctuion of work and power follow a tradeoff relation in quantum batteries. Additional we have also found that high power is accompanied by high fluctuations in power. #quantumtech #energystorage #quantum #batteries #quantumdevices #quantumscience
Brij Mohan, Tanmoy Pandit, Maciej Lewenstein, Manabendra Nath Bera: Fundamental Limitations on the Reliabilities of Power and Work in Quantum Batteries https://arxiv.org/abs/2601.05315 https://arxiv.org/pdf/2601.05315 https://arxiv.org/html/2601.05315
January 12, 2026 at 1:54 PM
June 17, 2026 at 11:46 PM
March 31, 2026 at 3:45 PM