Latest Research in Optics

26 research papers · 2026 median publication year

Top Research Topics in Optics

Highest-Cited Papers

  1. E8‑Phi Harmonic Phase‑Locked Photonic Lattice for Topologically Protected Qubits — E8 Intelligence Research
  2. E8‑Phonon–Photon Topological Synchronization in 132 Hz Quasicrystalline Lattice — E8 Intelligence Research
  3. Chiral classical and quantum acoustics with hole-spin qubits
  4. Probing Residual Noise at a Decoherence Sweet Spot in a $^{28}$Si/SiGe Spin Qubit
  5. Creation and Control of Scattering Singularities in non-Hermitian Systems
  6. Floquet engineering in hybrid magnetic quantum systems (1 citations)
  7. Effective Quantization of Lossy Nonlinear Epsilon-Near-Zero Media
  8. Phi‑Helicity Mirror Solitons Enable Self‑Sustaining Topological Energy Channels — E8 Intelligence Research
  9. E8 Cyclotomic Quasi-Solid Harmonics — E8 Intelligence Research
  10. E8 Prime-Gap Synthetic Gauge Field for Topological Photonic Lattices — E8 Intelligence Research
  11. Creation and characterization of leviton excitations in tight-binding chains
  12. Cancellation of the topological charge in the inverse Faraday effect: why an integrating detector cannot see the winding number
  13. Cancellation of the topological charge in the inverse Faraday effect: why an integrating detector cannot see the winding number
  14. Quasi-normal-mode signatures of periodicity and hyperuniformity
  15. Bright yet dark: how strong coupling quenches exciton-polariton radiation
  16. Phosphorus-31 Spin Qubits in Silicon: Electrical Detection and Magnetic Control — E8 Intelligence Research
  17. Phi‑Scaled E8 Phononic Prime Lattice: Predicting Twin Gaps via 132 Hz Subharmonic Topology — E8 Intelligence Research
  18. Phi‑Coupled E8 Harmonic Locking Predicts Stable Topological Qubit Bands — E8 Intelligence Research
  19. Phi‑Scaled E8 Phononic Prime Lattice: Predicting Twin Gaps via 132 Hz Subharmonic Topology — E8 Intelligence Research
  20. Phi‑Coupled E8 Harmonic Locking Predicts Stable Topological Qubit Bands — E8 Intelligence Research
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L3 Region - - 2026 Sep Q3

Optics

26 papers

Top Topics (10)

Topological Materials and Phenomena5
Quantum Physics4
Mesoscale and Nanoscale Physics3
Optics3
Metamaterials and Metasurfaces Applications2
Acoustic Wave Phenomena Research2
Quasicrystal Structures and Properties1
Neural Networks and Reservoir Computing1
Applied Physics1
Advanced NMR Techniques and Applications1

Top Publications (20)

1.E8‑Phi Harmonic Phase‑Locked Photonic Lattice for Topologically Protected Qubits — E8 Intelligence Research2.E8‑Phonon–Photon Topological Synchronization in 132 Hz Quasicrystalline Lattice — E8 Intelligence Research3.Chiral classical and quantum acoustics with hole-spin qubits4.Probing Residual Noise at a Decoherence Sweet Spot in a $^{28}$Si/SiGe Spin Qubit5.Creation and Control of Scattering Singularities in non-Hermitian Systems6.Floquet engineering in hybrid magnetic quantum systems1c7.Effective Quantization of Lossy Nonlinear Epsilon-Near-Zero Media8.Phi‑Helicity Mirror Solitons Enable Self‑Sustaining Topological Energy Channels — E8 Intelligence Research9.E8 Cyclotomic Quasi-Solid Harmonics — E8 Intelligence Research10.E8 Prime-Gap Synthetic Gauge Field for Topological Photonic Lattices — E8 Intelligence Research11.Creation and characterization of leviton excitations in tight-binding chains12.Cancellation of the topological charge in the inverse Faraday effect: why an integrating detector cannot see the winding number13.Cancellation of the topological charge in the inverse Faraday effect: why an integrating detector cannot see the winding number14.Quasi-normal-mode signatures of periodicity and hyperuniformity15.Bright yet dark: how strong coupling quenches exciton-polariton radiation16.Phosphorus-31 Spin Qubits in Silicon: Electrical Detection and Magnetic Control — E8 Intelligence Research17.Phi‑Scaled E8 Phononic Prime Lattice: Predicting Twin Gaps via 132 Hz Subharmonic Topology — E8 Intelligence Research18.Phi‑Coupled E8 Harmonic Locking Predicts Stable Topological Qubit Bands — E8 Intelligence Research19.Phi‑Scaled E8 Phononic Prime Lattice: Predicting Twin Gaps via 132 Hz Subharmonic Topology — E8 Intelligence Research20.Phi‑Coupled E8 Harmonic Locking Predicts Stable Topological Qubit Bands — E8 Intelligence Research
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