This LLNL invention proposes a new microstructured large mode area fiber design that enhances the confinement of the core mode while strongly suppressing thermal or scattering mediated dynamic couplings with higher order modes thought to be responsible for generating undesirable Transverse Mode Instabilities. The design accomplishes higher order mode suppression and core mode confinement by…
Keywords
- Show all (83)
- Synthesis and Processing (19)
- Additive Manufacturing (9)
- Substrate Engraved Meta-Surface (SEMS) (7)
- Materials for Energy Products (6)
- Compact Space Telescopes (5)
- Diode Lasers (4)
- Laser Materials Processing (4)
- Material Design (4)
- Precision Optical Finishing (4)
- Optical Damage Mitigation (3)
- RF Photonics (3)
- 3D Printing (2)
- Additively Manufactured (AM) Optics (2)
- Membranes (2)
- Rare Earth Elements (REEs) (2)
- Ultrashort Pulse Lasers (2)
- Direct Air Capture (1)
- Manufacturing Simulation (1)
- Precision Engineering (1)
- (-) Fiber Lasers (2)
Technology Portfolios
Image

Livermore Lab's SBC grating optics benefit from the combination of the following key technologies:
- LLNL proprietary optical coating designs utilizing >100 thin film layers – enables ultra-low-loss, ppm transmission levels through the coating, high diffraction efficiency, and large bandwidth.
- LLNL proprietary dispersive surface relief structure…