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Thrilled to share that my single-author paper, “Advancements in Entangled Photon Pairs in 2D van der Waal Materials for On-Chip Quantum Device Applications,” has now been available online in Advanced Quantum Technology, Wiley.
https://t.co/G1TVUoK5by
Today @arxiv (https://t.co/T0uO9C6667), Hamiltonian learning quantum magnets with non-local impurity tomography, together with Greta Lupi.
@AaltoTechsperts
Why are the kernels in corncobs different colours?
The explanation lies in how different genes are expressed. Barbara McClintock studied genetics and "jumping genes". She showed that parts of the corn's genetic code can shift from one place to another within its chromosomes.
Understanding the mechanism by which magnons—the quanta of spin waves—propagate is important for developing practical devices. Now it is shown that long-range dipole–dipole interactions mediate the propagation in a van der Waals antiferromagnet.
https://t.co/qw7bV5aJRX
The @PhysRevMater team is excited to welcome Prof. Arindam Ghosh @ArindamPhysics@Physics_at_IISc to our Editorial Board!
He is an expert in the physics of semiconductors, the interplay of Coulomb interaction and disorder in low-dimensional systems, and noise in quantum devices.
Good article in @TheEconomist on Moore's Law, the recent #IEDM2023, 3D chip stacking & #2Dtransistors. I contributed to the 2D discussion, although my small quote is a bit out of context. If the link is paywalled, here's the PDF: https://t.co/yzsWYPTuai
https://t.co/V54GoqrkaA
Strong coupling of surface plasmons and molecular vibration mode is reported in a terahertz plasmonic metasurface covering lactose molecules, which is effective for chemical detection and biosensing. https://t.co/xaFlYYRYod