Latest Research in Optics
26 research papers · 2026 median publication year
Top Research Topics in Optics
- Topological Materials and Phenomena — 5 papers
- Quantum Physics — 4 papers
- Mesoscale and Nanoscale Physics — 3 papers
- Optics — 3 papers
- Metamaterials and Metasurfaces Applications — 2 papers
- Acoustic Wave Phenomena Research — 2 papers
- Quasicrystal Structures and Properties — 1 papers
- Neural Networks and Reservoir Computing — 1 papers
- Applied Physics — 1 papers
- Advanced NMR Techniques and Applications — 1 papers
Highest-Cited Papers
- E8‑Phi Harmonic Phase‑Locked Photonic Lattice for Topologically Protected Qubits — E8 Intelligence Research
- E8‑Phonon–Photon Topological Synchronization in 132 Hz Quasicrystalline Lattice — E8 Intelligence Research
- Chiral classical and quantum acoustics with hole-spin qubits
- Probing Residual Noise at a Decoherence Sweet Spot in a $^{28}$Si/SiGe Spin Qubit
- Creation and Control of Scattering Singularities in non-Hermitian Systems
- Floquet engineering in hybrid magnetic quantum systems (1 citations)
- Effective Quantization of Lossy Nonlinear Epsilon-Near-Zero Media
- Phi‑Helicity Mirror Solitons Enable Self‑Sustaining Topological Energy Channels — E8 Intelligence Research
- E8 Cyclotomic Quasi-Solid Harmonics — E8 Intelligence Research
- E8 Prime-Gap Synthetic Gauge Field for Topological Photonic Lattices — E8 Intelligence Research
- Creation and characterization of leviton excitations in tight-binding chains
- Cancellation of the topological charge in the inverse Faraday effect: why an integrating detector cannot see the winding number
- Cancellation of the topological charge in the inverse Faraday effect: why an integrating detector cannot see the winding number
- Quasi-normal-mode signatures of periodicity and hyperuniformity
- Bright yet dark: how strong coupling quenches exciton-polariton radiation
- Phosphorus-31 Spin Qubits in Silicon: Electrical Detection and Magnetic Control — E8 Intelligence Research
- Phi‑Scaled E8 Phononic Prime Lattice: Predicting Twin Gaps via 132 Hz Subharmonic Topology — E8 Intelligence Research
- Phi‑Coupled E8 Harmonic Locking Predicts Stable Topological Qubit Bands — E8 Intelligence Research
- Phi‑Scaled E8 Phononic Prime Lattice: Predicting Twin Gaps via 132 Hz Subharmonic Topology — E8 Intelligence Research
- Phi‑Coupled E8 Harmonic Locking Predicts Stable Topological Qubit Bands — E8 Intelligence Research