An experimental tour-de-force: Entanglement between glass bead and light #Science #Physics #QuantumPhysics #quantumentanglement #glassbeads #lightparticles #physicsresearch #superposition

An experimental tour-de-force: Entanglement between glass bead and light #Science #Physics #QuantumPhysics #quantumentanglement #glassbeads #lightparticles #physicsresearch #superposition
Exceptional-point-based protocols enable direction-dependent chiral transfer between even-parity Bell states and dissipative entanglement generation in two-qubit systems via engineered two-photon loss mechanisms.
Memory is the enemy of the new!
kfoundation.org/transcript/i...
Maybe #Krishnamurti ’s timeless #compassion is related to a #QuantumEntanglement ’s #nothingness, remembering me #GabrielMarcel ’s #EmpathicSpreading
#ImmédiationSympathique
data.bnf.fr/fr/see_all_a...
en.wikipedia.org/wiki/Gabriel...
Up the exponential curve of technology:
Researchers have generated quantum-entangled photons directly from sunlight, potentially enabling cheaper quantum systems and secure satellite communications without onboard lasers. #QuantumComputing #QuantumEntanglement #TechAdvance
Critical quantum systems compress exponentially many measurement outcomes into a single conformal coordinate that predicts remaining entanglement, revealing universal Luttinger-liquid dynamics.
After 25 Years, Physicists Can Finally Measure The 'Other' Kind of #QuantumEntanglement
#Physics #Science
After 25 Years, Physicists Can Finally Measure The 'Other' Kind of #QuantumEntanglement
#Physics #Science
Novel protocol distributes 1.75 Bell pairs per optical mode using high-order coherent-state modulation and optimized POVM measurements—3.8× improvement over single-photon baselines for quantum networks.
Researchers have developed a 25-year-sought method to measure W state multi-photon entanglement, enabling efficient quantum identification without exponential data scaling. This advances quantum teleportation, communication, and computing technologies.
Demonstrates that collective suppression of quantum fluctuations—independent of spatial locality—fundamentally constrains entanglement in gapped systems with power-law interactions, revealing universal scaling thresholds.
NITheCS & QSUN Seminar: ‘Controlling Two-Photon Interference & Entanglement with Mechanical Rotations’
🎤 Prof Marko Toroš (Uni. of Ljubljana)
📅 Fri, 2 Oct 2026 | 14h00 SAST
💻 Attend online
buff.ly/02N59Y4
#QuantumOptics #QuantumEntanglement #TwoPhotonInterference #MechanicalRotation #QuantumSensing
Characterized the spatial structure of maximally entangled field modes in quantum vacuum between spheres and designed a non-perturbative protocol for optimal entanglement extraction using harmonic oscillator probes.
Mathematical framework for optimal entanglement detection using finitely many quantum state invariants. Even singular-value moments of realignment are tensor trace invariants, enabling efficient certification of PPT-entangled quantum states.
Researchers discovered magnon velocity reduction directly signals quantum entanglement through polaron formation, offering an experimentally accessible method to detect entanglement without complex state reconstruction in magnetic materials.
NITheCS Colloquium: ‘Quantum Complexity and Entanglement in Neutrino Oscillations’ by Prof Soebur Razzaque (UJ).
📅 Monday, 2 November 2026
🕓 16h00–17h00 SAST
📍 Attend in person or online
buff.ly/KOabFJk
#QuantumPhysics #NeutrinoOscillations #QuantumEntanglement #QuantumInformation #ParticlePhysics
Researchers discover continuous temporal entanglement transitions in periodically driven quantum systems, where entanglement spectrum levels meet tangentially—extending phase transition theory beyond first-order transitions.
Reduced 6D to 5D game proving robust self-testing of nonmaximally entangled states. Shows no maximally entangled state can achieve perfect play, advancing device-independent quantum certification.
Develops exact multiscale bounds for quantifying high-dimensional bipartite entanglement using nested Vidal tails, enabling sharper Schmidt-number certification and resource quantification beyond single-scale methods.
RWTH Aachen researchers proved zero-error quantum source coding requires only 2 messages under odd parity conditions, achieving perfect one-bit communication without entanglement—resolving a decades-old conjecture about spectral properties.
Researchers establish exact mathematical correspondence between quantum measurement-induced phase transitions and classical percolation, providing first analytical expressions for entanglement exponents in non-unitary systems.