Recent Work
Parent: Department of Electrical and Computer Engineering
eScholarship stats: Breakdown by Item for May through August, 2026
| Item | Title | Total requests | Download | View-only | %Dnld |
|---|---|---|---|---|---|
| 0299b835 | Exploring Donut-Shaped Laser Beams for Microbunching Instability Control in Free Electron Lasers | 203 | 42 | 161 | 20.7% |
| 0gt7j9qj | Software-Defined ECC: Heuristic Recovery from Uncorrectable Memory Errors | 177 | 63 | 114 | 35.6% |
| 3t28p8qm | Gate-tunable frequency combs in graphene-nitride microresonators | 161 | 38 | 123 | 23.6% |
| 5hp7z7np | Stokes-Mueller Formalism and the Poincaré Sphere for Wave Polarization State | 159 | 50 | 109 | 31.4% |
| 5549g1ch | Review of ‘Breaking the field-of-view limit in augmented reality with a scanning waveguide display’ | 148 | 68 | 80 | 45.9% |
| 2991t5gk | Review of the Laguerre-Gaussian Mode Conversion Process | 118 | 26 | 92 | 22.0% |
| 9tj8q6s6 | The Usage of MgO:PPLN Crystal in f-to-2f Interferometry | 118 | 42 | 76 | 35.6% |
| 30q5r4tv | Integrated Structured Light Architectures with Polarization and Discretization Analysis | 114 | 16 | 98 | 14.0% |
| 2666m4k5 | Fourier Optics-based Modeling of Structured Light from Coherently Combined Microlens Arrays in Python and Deep Learning Reconstruction: A Review of Integrated Structured Light Architectures | 113 | 76 | 37 | 67.3% |
| 8jw232j4 | Broadband gate-tunable terahertz plasmonsin graphene heterostructures | 106 | 37 | 69 | 34.9% |
| 0ks7c9wt | Hermite-Gaussian Mode Laser as an Alternative to the Laguerre-Gaussian Mode for Microbunching Suppression | 102 | 32 | 70 | 31.4% |
| 3cx3s73v | Novel Framework for a Cybernetic Theory of General Intelligence and Information Field Theory for Strong AI Research and Development - Virtual Neurons Are All You Need | 102 | 58 | 44 | 56.9% |
| 9k10r4xm | Design, simulation and experimental characterization of a novel parabolic trough hybrid solar Photovoltaic/Thermal (PV/T) | 102 | 30 | 72 | 29.4% |
| 0913b123 | Integrated Structured Light Architectures: Effects of Channel Discretization | 95 | 35 | 60 | 36.8% |
| 6hh4w7t0 | Integrated Structured Light Architectures: A review of higher order OAM beams | 94 | 78 | 16 | 83.0% |
| 26b6j2z1 | Polarization Control Units | 92 | 14 | 78 | 15.2% |
| 1kf6295h | Phase modulation and its use in integrated structured light architectures | 89 | 13 | 76 | 14.6% |
| 5vw927rf | A Review of an Experimental Method for Microbunching Instability Suppression in Free-electron Lasers | 89 | 34 | 55 | 38.2% |
| 1607s20q | Review of Lemons Et Al. | 88 | 47 | 41 | 53.4% |
| 4dh6n8j1 | An Advancement of Structured Light | 87 | 30 | 57 | 34.5% |
| 95t287z4 | Review of Experimental Methods for Carrier-Envelope Phase Stabilization | 86 | 31 | 55 | 36.0% |
| 4770r9hw | LG<sub>01</sub> Transverse LH Mode via Metamaterial Orbital Angular Momentum (OAM) Beam Generation | 85 | 25 | 60 | 29.4% |
| 21f2p3wm | Independent Poincaré-Sphere Analysis of Polarization States in Integrated Structured-Light Architectures | 84 | 67 | 17 | 79.8% |
| 22k7m6pp | Comparing Discretized Beam Arrays to Ideal LG0,1 Beams in Integrated Structured-Light Setups | 82 | 31 | 51 | 37.8% |
| 1tq5f209 | Cracking the Code: Laguerre-Gaussian Modes and the Battle Against Microbunching Instability | 80 | 16 | 64 | 20.0% |
| 99b8s5m4 | Feed-forward CEP stabilization revisited: a lower-bound on out-of-loop phase noise | 80 | 27 | 53 | 33.8% |
| 1xr1z9br | Review on the Formation of Laguerre Gaussian Modes | 77 | 26 | 51 | 33.8% |
| 52q4k7fw | Enhancing Free-Electron Laser Stability with Laguerre-Gaussian Mode Laser Heating | 77 | 54 | 23 | 70.1% |
| 6wq7d8v4 | Use of Laguerre-Gaussian Modes | 77 | 35 | 42 | 45.5% |
| 7720r272 | Aliasing and Its Effects on Integrated Structured Light Architecture | 77 | 43 | 34 | 55.8% |
| 1fm4q9g3 | Laser Modulation with Phased Arrays | 75 | 37 | 38 | 49.3% |
| 6cz439z5 | Review: The Effect of Wavelength Modulation on Microbunching Instability | 75 | 32 | 43 | 42.7% |
| 79k7s7cz | Stokes Parameters in Integrated Structured Light Architectures | 75 | 21 | 54 | 28.0% |
| 0ph3d78g | The Effect of Laser Wavelength on Beam Size and Heating Efficiency in Photonic Laser Heaters | 74 | 55 | 19 | 74.3% |
| 80n259bc | Stretching Ultrafast Pulses Using Optical Fibers | 73 | 30 | 43 | 41.1% |
| 0ks4k3xm | Review Paper: Laguerre-Gaussian Mode Laser Heater for Microbunching Instability Suppression in Free-Electron Lasers | 72 | 29 | 43 | 40.3% |
| 7cz5v60v | Review of “Carrier-envelope phase stabilization of an Er:Yb:glass laser via a feed-forward technique” | 71 | 28 | 43 | 39.4% |
| 9h08q48h | Manipulating OAM Beams for Torque and Dynometric Systems | 71 | 32 | 39 | 45.1% |
| 31z6183x | Final Review Paper | 69 | 31 | 38 | 44.9% |
| 5311m9sr | A Brighter Future: Next-gen Electron & Photon Probes for Quantum Science Frontiers | 68 | 32 | 36 | 47.1% |
| 62b9c4j0 | Wavelength Considerations for Laguerre-Gaussian Mode Laser Heater for Free Electron Lasers | 68 | 15 | 53 | 22.1% |
| 2053m5cs | Generation of Laguerre-Gaussian 01 Mode for Use In Free Electron Lasers | 67 | 37 | 30 | 55.2% |
| 3q6363zr | Review of Integrated structured light architectures | 66 | 36 | 30 | 54.5% |
| 8jr463rg | Importance of Cylindrical Symmetry and Gaussian Energy Distribution in Laguerre-Gaussian Modes | 66 | 22 | 44 | 33.3% |
| 0r30211d | Optimizing LG<sub>01</sub> Laser Heater Performance: An Analysis ofBeam Size Effects on MBI Suppression | 65 | 28 | 37 | 43.1% |
| 6bc2v4tz | Laguerre-Gaussian Laser Heating in Free-Electron Lasers and Alternative Beam Modes for Suppressing Microbunching Instability | 65 | 27 | 38 | 41.5% |
| 362517z3 | Advancements in Microbunching Instability Suppression: Theoretical Implementation of Speckle Array Laser Heater in Free Electron Lasers | 64 | 25 | 39 | 39.1% |
| 03g1d5bq | Dispersion Effects in Spiral Phase Plate LG01 Generation and Consequences for FEL Laser Heating | 63 | 35 | 28 | 55.6% |
| 9515502r | Review of Laguerre-Gaussian Mode Laser Heater for Microbunching Instability Suppression in Free-Electron Lasers | 63 | 29 | 34 | 46.0% |
| 26w7t4d9 | Simulating Amplified Spontaneous Emission Power in Erbium-Doped Fiber Amplifiers | 62 | 21 | 41 | 33.9% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.