Attaining the quantum limit of super resolution in imaging an object's length via pre-detection spatial mode sorting
arXiv:1801.06602 · doi:10.1103/PhysRevA.99.033847
Abstract
Recent work considered the ultimate (quantum) limit of the precision of estimating the distance between two point objects. It was shown that the performance gap between the quantum limit and that of ideal continuum image-plane direct detection is the largest for highly sub-Rayleigh separation of the objects, and that a pre-detection mode sorting could attain the quantum limit. Here we extend this to a more general problem of estimating the length of an incoherently radiating extended (line) object. We find, as expected by the Rayleigh criterion, the Fisher information (FI) per integrated photon vanishes in the limit of small length for ideal image plane direct detection. Conversely, for a Hermite-Gaussian (HG) pre-detection mode sorter, this normalized FI does not decrease with decreasing object length, similar to the two point object case. However, unlike in the two-object problem, the FI per photon of both detection strategies gradually decreases as the object length greatly exceeds the Rayleigh limit, due to the relative inefficiency of information provided by photons emanating from near the center of the object about its length. We evaluate the quantum Fisher information per unit integrated photons and find that the HG mode sorter exactly achieves this limit at all values of the object length. Further, a simple binary mode sorter maintains the advantage of the full mode sorter at highly sub-Rayleigh length. In addition to this FI analysis, we quantify improvement in terms of the actual mean squared error of the length estimate. Finally, we consider the effect of imperfect mode sorting, and show that the performance improvement over direct detection is robust over a range of sub-Rayleigh lengths.
8 pages, 7 figures, submitted to ISIT 2018
References in corpus (4)
- Efficient and mode selective spatial mode multiplexer based on Multi-Plane Light Conversion
- Gouy Phase Radial Mode Sorter for Light: Concepts and Experiments
- Fisher information for far-field linear optical superresolution via homodyne or heterodyne detection in a higher-order local oscillator mode
- Fundamental limit of resolving two point sources limited by an arbitrary point spread function
Cited by in corpus (28)
- Resolving starlight: a quantum perspective
- The quantum limit to incoherent imaging is achieved by linear interferometry
- Approaching Quantum Limited Super-Resolution Imaging without Prior Knowledge of the Object Location
- Optical quantum super-resolution imaging and hypothesis testing
- Quantum limits of localisation microscopy
- Identifying Objects at the Quantum Limit for Super-Resolution Imaging
- Subwavelength quantum imaging with noisy detectors
- Single-photon sub-Rayleigh precision measurements of a pair of incoherent sources of unequal intensity
- Semiparametric estimation for incoherent optical imaging
- Quantum limited super-resolution of an unequal-brightness source pair in three dimensions
- Sub-Rayleigh resolution of two incoherent sources by array homodyning
- Superresolution in interferometric imaging of strong thermal sources
- Quantum noise spectroscopy as an incoherent imaging problem
- Quantum limit to subdiffraction incoherent optical imaging. II. A parametric-submodel approach
- Attaining quantum limited precision of localizing an object in passive imaging
- Imaging arbitrary incoherent source distributions with near quantum-limited resolution
- Quantum limits of parameter estimation in long-baseline imaging
- Quantum Limited Superresolution of Extended Sources in One and Two Dimensions
- Generalization of Rayleigh's Criterion on Parameter Estimation with Incoherent Sources
- Efficient superoscillation measurement for incoherent optical imaging
- Single-photon super-resolved spectroscopy from spatial-mode demultiplexing
- Experimental 3D super-localization with Laguerre-Gaussian modes
- Superresolution imaging with entanglement-enhanced telescopy
- Quantum limit to subdiffraction incoherent optical imaging. III. Numerical analysis
- On-sky Demonstration of Subdiffraction-limited Astronomical Measurement Using a Photonic Lantern
- Efficient estimation of error bounds for quantum multiparametric imaging with constraints
- Quantum resolution limit of long-baseline imaging using distributed entanglement
- Towards Quantum Limited Spatial Resolution of NV-Diamond Magnetometry