Sparsity-based single-shot sub-wavelength coherent diffractive imaging
arXiv:1112.4707 · doi:10.1038/nmat3289
Abstract
We present the experimental reconstruction of sub-wavelength features from the far-field intensity of sparse optical objects: sparsity-based sub-wavelength imaging combined with phase-retrieval. As examples, we demonstrate the recovery of random and ordered arrangements of 100 nm features with the resolution of 30 nm, with an illuminating wavelength of 532 nm. Our algorithmic technique relies on minimizing the number of degrees of freedom; it works in real-time, requires no scanning, and can be implemented in all existing microscopes - optical and non-optical.
References in corpus (4)
Cited by in corpus (40)
- Phase recovery and holographic image reconstruction using deep learning in neural networks
- Compressive Phase Retrieval via Generalized Approximate Message Passing
- Roadmap on Wavefront Shaping and deep imaging in complex media
- Oversampling smoothness (OSS): an effective algorithm for phase retrieval of noisy diffraction intensities
- Locomotion of microspheres for super-resolution imaging
- Exploiting speckle correlations to improve the resolution of wide-field fluorescence microscopy
- Deep learning-based super-resolution in coherent imaging systems
- STFT Phase Retrieval: Uniqueness Guarantees and Recovery Algorithms
- Ptychographic reconstruction algorithm for frequency resolved optical gating: super-resolution and supreme robustness
- Real-time coherent diffraction inversion using deep generative networks
- Single-shot 3D structure determination of nanocrystals with femtosecond X-ray free electron laser pulses
- Phase Retrieval with Application to Optical Imaging
- In situ coherent diffractive imaging
- Low Rank Phase Retrieval
- Super-resolution microscopy of single atoms in optical lattices
- Phase Recovery, MaxCut and Complex Semidefinite Programming
- Real-time 3D Nanoscale Coherent Imaging via Physics-aware Deep Learning
- Photoacoustic imaging beyond the acoustic diffraction-limit with dynamic speckle illumination and sparse joint support recovery
- Single-pixel coherent diffraction imaging
- Undersampled Phase Retrieval with Outliers
- Sparsity-Based Super Resolution for SEM Images
- Influence of the local scattering environment on the localization precision of single particles
- Two-photon tomography using on-chip quantum walks
- Optimizing illumination for precise multi-parameter estimations in coherent diffractive imaging
- Simultaneously Structured Models with Application to Sparse and Low-rank Matrices
- Invariance property of the Fisher information in scattering media
- On Conditions for Uniqueness in Sparse Phase Retrieval
- Model-free estimation of the Cramér-Rao bound for deep-learning microscopy in complex media
- Localization of nanoscale objects with light singularities
- Far-field intensity signature of sub-wavelength microscopic objects
- Phaseless Subspace Tracking
- Lensless Imaging with Compressive Ultrafast Sensing
- Designing and using prior data in Ankylography: Recovering a 3D object from a single diffraction intensity pattern
- Far-field Imaging beyond the Diffraction Limit Using a Single Radar
- Parameter retrieval methods in ptychography
- Resolving Complex Subwavelength Grating Structures Using Topologically Structured Light
- Computational multifocal microscopy
- An Algorithm for Exact Super-resolution and Phase Retrieval
- Nonlinear Compressive Particle Filtering
- Structure-Based Super-Resolution Recovery of Three-Photon Quantum States from Two-Fold Coincidences