Alan E Willner
Overview
Explore the profile of Alan E Willner including associated specialties, affiliations and a list of published articles.
Author names and details appear as published. Due to indexing inconsistencies, multiple individuals may share a name, and a single author may have variations. MedLuna displays this data as publicly available, without modification or verification
Snapshot
Snapshot
Articles
205
Citations
768
Followers
0
Related Specialties
Related Specialties
Top 10 Co-Authors
Top 10 Co-Authors
Published In
Published In
Affiliations
Affiliations
Soon will be listed here.
Recent Articles
1.
Su X, Zou K, Wang Y, Yessenov M, Zhou H, Song H, et al.
Nat Commun
. 2025 Feb;
16(1):2027.
PMID: 40016205
Space-time wave packets (STWPs) with correlated spatial and frequency degrees of freedom exhibit time-dependent spatial interference, thereby giving rise to interesting dynamic evolution behaviors. While versatile spatiotemporal phenomena have been...
2.
Karapetyan N, Minoofar A, Alhaddad A, Ko W, Lian H, Ramakrishnan M, et al.
Opt Lett
. 2025 Jan;
50(3):788-791.
PMID: 39888755
Optical data format de-aggregation enables the conversion from a single higher-order phase-encoded data channel coming from a high-bandwidth network into two amplitude-modulated signals that may be commonly used in lower-bandwidth...
3.
Willner A, Su X, Song H, Zhou H, Zou K
Nanophotonics
. 2024 Dec;
12(14):2669-2685.
PMID: 39635467
There is growing interest in using multiple multiplexed orthogonal orbital angular momentum (OAM) beams to increase the data capacity of communication systems in different frequency ranges. To help enable future...
4.
Song H, Zhang R, Hu N, Zhou H, Su X, Song H, et al.
Nanophotonics
. 2024 Dec;
11(4):885-895.
PMID: 39635374
When an orbital-angular-momentum (OAM) beam propagates through the dynamic air-water interface, the aerosol above the water and the water surface curvature could induce various degradations (e.g., wavefront distortion, beam wandering,...
5.
Wang Z, Xiao Y, Liao K, Li T, Song H, Chen H, et al.
Nanophotonics
. 2024 Dec;
11(16):3531-3546.
PMID: 39634458
Integrated photonic circuits are created as a stable and small form factor analogue of fiber-based optical systems, from wavelength-division multiplication transceivers to more recent mode-division multiplexing components. Silicon nanowire waveguides...
6.
Song H, Zhou H, Zou K, Zhang R, Su X, Pang K, et al.
Opt Express
. 2024 Nov;
32(19):33803-33810.
PMID: 39573072
We experimentally demonstrate a 10-Gbit/s free-space communication link using a single Laguerre-Gaussian (LG) beam with tunable radial and azimuthal modal indices generated by a photonic integrated circuit comprising two concentric...
7.
Su X, Zou K, Zhou H, Song H, Wang Y, Zeng R, et al.
Opt Express
. 2024 Nov;
32(15):26653-26666.
PMID: 39538525
In general, space-time wave packets with correlations between transverse spatial fields and temporal frequency spectra can lead to unique spatiotemporal dynamics, thus enabling control of the instantaneous light properties. However,...
8.
Alhaddad A, Minoofar A, Ko W, Karapetyan N, Ramakrishnan M, Zhou H, et al.
Opt Lett
. 2024 Sep;
49(18):5079-5082.
PMID: 39270234
Performing pattern recognition via correlation in the optical domain has potential advantages, including: (i) high-speed operation at the line rate and (ii) tunability and scalability by operating on the optical...
9.
Minoofar A, Alhaddad A, Ko W, Karapetyan N, Almaiman A, Zhou H, et al.
Opt Lett
. 2024 Aug;
49(17):4899-4902.
PMID: 39207992
Compared to its electronic counterpart, optically performed matrix convolution can accommodate phase-encoded data at high rates while avoiding optical-to-electronic-to-optical (OEO) conversions. We experimentally demonstrate a reconfigurable matrix convolution of quadrature...
10.
Duan Y, Zhou H, Jiang Z, Ramakrishnan M, Su X, Ko W, et al.
Opt Lett
. 2024 Aug;
49(15):4397-4400.
PMID: 39090943
In this paper, we experimentally demonstrate an 8-Gbit/s quadrature-phase-shift-keying (QPSK) coherent underwater wireless optical communication (UWOC) link under scattering conditions at 532 nm. At the transmitter, we generate the 532-nm...