OSA's Digital Library

Photonics Research

Photonics Research

| A joint OSA/Chinese Laser Press publication


About the Journal

The Optical Society (OSA) and the Chinese Laser Press (CLP) have partnered to launch a new peer-reviewed journal publishing fundamental and applied research progress in optics and photonics. Photonics Research debuted in June 2013.

Editor-in-Chief: Zhiping (James) Zhou, Peking University
eISSN: 2327-9125
Frequency: Rapid article-at-a-time publication, Bi-monthly issues

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Flexible, robust and highly efficient broadband nonlinear optical materials based on graphene oxide impregnated polymer sheets
We report a simple solution-processed method for the fabrication of low-cost, flexible optical limiting... Photonics Research, Vol. 3 Issue 3, pp.A87-A91 (2015)

Nonlinear optical absorption of few-layer molybdenum diselenide (MoSe2) for passively mode-locked soliton fiber laser [Invited]
In this paper, both nonlinear saturable absorption and two-photon absorption (TPA) of few-layer molybdenum... Photonics Research, Vol. 3 Issue 3, pp.A79-A86 (2015)

Dual-wavelength rectangular pulse erbium-doped fiber laser based on topological insulator saturable absorber
We reported on the generation of the dual-wavelength rectangular pulse in an erbium-doped fiber laser (EDFL)... Photonics Research, Vol. 3 Issue 3, pp.94-99 (2015)

1.3  kW monolithic linearly polarized single-mode master oscillator power amplifier and strategies for mitigating mode instabilities
We report on the high-power amplification of a 1064 nm linearly polarized laser in an all-fiber... Photonics Research, Vol. 3 Issue 3, pp.86-93 (2015)

Interference of quantum beats in Hong–Ou–Mandel interferometry
Quantum beats can be produced in fourth-order interference such as in a Hong–Ou–Mandel (HOM)... Photonics Research, Vol. 3 Issue 3, pp.82-85 (2015)

Conversion of out-of-phase to in-phase order in coupled laser arrays with second harmonics
A novel method for converting an array of out-of-phase lasers into one of in-phase lasers that can be tightly... Photonics Research, Vol. 3 Issue 3, pp.77-81 (2015)

Soliton mode-locked fiber laser based on topological insulator Bi2Te3 nanosheets at 2  μm
We reported diverse soliton operations in a thulium/holmium-doped fiber laser by taking advantage of a... Photonics Research, Vol. 3 Issue 3, pp.72-76 (2015)

Ultra-thin, planar, broadband, dual-polarity plasmonic metalens
An ultrathin, planar, broadband metalens composed of metal rectangular split-ring resonators (MRSRRs) has... Photonics Research, Vol. 3 Issue 3, pp.68-71 (2015)

High-Q ring resonators directly written in As2S3 chalcogenide glass films
Planar ring resonator waveguides are fabricated in thin films of As2S3 chalcogenide... Photonics Research, Vol. 3 Issue 3, pp.63-67 (2015)

Silicon high-speed binary phase-shift keying modulator with a single-drive push–pull high-speed traveling wave electrode
We demonstrate binary phase shift keying (BPSK) modulation using a silicon Mach–Zehnder modulator with... Photonics Research, Vol. 3 Issue 3, pp.58-62 (2015)

Tunable near-infrared plasmonic perfect absorber based on phase-change materials
A tunable plasmonic perfect absorber with a tuning range of ∼650  nm is realized by... Photonics Research, Vol. 3 Issue 3, pp.54-57 (2015)

SIMO detection schemes for underwater optical wireless communication under turbulence
In underwater optical wireless communication (UOWC), a channel is characterized by abundant... Photonics Research, Vol. 3 Issue 3, pp.48-53 (2015)

Introduction to the Photonics Based on Two-dimensional Materials feature issue
  Photonics Research, Vol. 3 Issue 2, pp.PBTD1-PBTD1 (2015)

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Topics in Current Issue

Vol. 3, Iss. 2 — Apr. 1, 2015  pp: 28–47

Fiber Lasers (1)
Photonic Crystals (1)
Scattering (1)

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Call for Papers

Integrated Photonics: challenges and perspectives
  • Daoxin Dai (Lead), Di Liang, Liu Liu
  • Submission deadline: 15 April 2015

In Progress

Photonics Based on Two Dimensional Materials
  • Han Zhang, Zhipei Sun, Jun Wang
  • In progress (no new submissions accepted)


Microwave Photonics
  • Jianping Yao, Jose Capmany, Kun Xu
  • Published
Group IV Photonics
  • Jurgen Michel, Marco Romagnoli, Hon Tsang, Koji Yamada
  • Published

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