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Photonics, Volume 11, Issue 5

2024 May - 94 articles

Cover Story: Chirped pulse amplification (CPA) is the golden standard for obtaining powerful ultrashort laser pulses. However, wavelength-tunable CPA systems are rarely reported. The output parameters' flexibility is desirable in various fields such as biomedical imaging, sensing, nonlinear spectroscopy and optical parametric amplification. This work presents a 1720 nm–1800 nm tunable CPA system based on a Tm-doped fiber. The experimental results are empowered by numerical simulation, which suggests further steps for the improvement of system performance. This is the first demonstration of a wavelength-tunable CPA system beyond 1.1 µm, which may inspire the development of similar systems at other wavelengths. View this paper
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Articles (94)

  • Article
  • Open Access
2 Citations
2,350 Views
12 Pages

The generation of optical beam arrays with prospective uses within the realms of microscopy, photonics, non-linear optics, and material processing often requires Dammann gratings. Here, we report the direct fabrication of one- and two-dimensional Dam...

  • Article
  • Open Access
4 Citations
3,033 Views
12 Pages

Compact Low Loss Ribbed Asymmetric Multimode Interference Power Splitter

  • Yanfeng Liang,
  • Huanlin Lv,
  • Baichao Liu,
  • Haoyu Wang,
  • Fangxu Liu,
  • Shuo Liu,
  • Yang Cong,
  • Xuanchen Li and
  • Qingxiao Guo

Optical power splitters (OPSs) are utilized extensively in integrated photonic circuits, drawing significant interest in research on power splitters with adjustable splitting ratios. This paper introduces a compact, low-loss 1 × 2 asymmetric mu...

  • Article
  • Open Access
4 Citations
2,087 Views
11 Pages

Mechanical Assessment in Atherosclerosis Based on Photoacoustic Viscoelasticity Imaging

  • Xingchao Zhang,
  • Xiaohan Shi,
  • Hui Wu,
  • Caixun Bai,
  • Junshan Xiu and
  • Yue Zhao

Early identification of vulnerable plaques is a major challenge in diagnosis and assessment of atherosclerosis. In atherosclerotic plaque development, the proportion change in components caused plaque mechanical property change and induced plaque rup...

  • Article
  • Open Access
3 Citations
2,804 Views
10 Pages

Enhanced Photon-Pair Generation Based on Thin-Film Lithium Niobate Doubly Resonant Photonic Crystal Cavity

  • Jinmian Zhu,
  • Fengli Liu,
  • Fangheng Fu,
  • Yuming Wei,
  • Tiefeng Yang,
  • Heyuan Guan and
  • Huihui Lu

In this work, a doubly resonant photonic crystal (PhC) cavity is proposed to enhance second harmonic generation (SHG) efficiency and photon pair generation rate (PGR). Through the exploration of geometry parameters, a band-edge mode within the light...

  • Article
  • Open Access
14 Citations
2,385 Views
15 Pages

High-Q Multiband Narrowband Absorbers Based on Two-Dimensional Graphene Metamaterials

  • Aijun Zhu,
  • Pengcheng Bu,
  • Lei Cheng,
  • Cong Hu and
  • Rabi Mahapatra

In this paper, an absorber with multi-band, tunable, high Q, and high sensitivity, based on terahertz periodic two-dimensional patterned graphene surface plasmon resonance (SPR), is proposed. The absorber consists of a bottom metal film separated by...

  • Article
  • Open Access
7 Citations
3,980 Views
16 Pages

Compact Quantum Random Number Generator Based on a Laser Diode and a Hybrid Chip with Integrated Silicon Photonics

  • Xuyang Wang,
  • Tao Zheng,
  • Yanxiang Jia,
  • Jin Huang,
  • Xinyi Zhu,
  • Yuqi Shi,
  • Ning Wang,
  • Zhenguo Lu,
  • Jun Zou and
  • Yongmin Li

In this study, a compact and low-power-consumption quantum random number generator (QRNG) based on a laser diode and a hybrid chip with integrated silicon photonics is proposed and verified experimentally. The hybrid chip’s size is 8.8 ×...

  • Article
  • Open Access
1 Citations
2,969 Views
12 Pages

Boundary Feedback Fiber Random Microcavity Laser Based on Disordered Cladding Structures

  • Hongyang Zhu,
  • Bingquan Zhao,
  • Zhi Liu,
  • Zhen He,
  • Lihong Dong,
  • Hongyu Gao and
  • Xiaoming Zhao

The cavity form of complex microcavity lasers predominantly relies on disordered structures, whether found in nature or artificially prepared. These structures, characterized by disorder, facilitate random lasing through the feedback effect of the ca...

  • Article
  • Open Access
1 Citations
2,210 Views
11 Pages

The Generation of Equal-Intensity and Multi-Focus Optical Vortices by a Composite Spiral Zone Plate

  • Huaping Zang,
  • Jingzhe Li,
  • Chenglong Zheng,
  • Yongzhi Tian,
  • Lai Wei,
  • Quanping Fan,
  • Shaoyi Wang,
  • Chuanke Wang,
  • Juan Xie and
  • Leifeng Cao

We propose a new vortex lens for producing multiple focused coaxial vortices with approximately equal intensities along the optical axis, termed equal-intensity multi-focus composite spiral zone plates (EMCSZPs). In this typical methodology, two conc...

  • Article
  • Open Access
1 Citations
2,357 Views
14 Pages

Simulation of a Pulsed Metastable Helium Lidar

  • Jiaxin Lan,
  • Yuli Han,
  • Ruocan Zhao,
  • Tingdi Chen,
  • Xianghui Xue,
  • Dongsong Sun,
  • Hang Zhou,
  • Zhenwei Liu and
  • Yingyu Liu

Measurements of atmosphere density in the upper thermosphere and exosphere are of great significance for studying space–atmosphere interactions. However, the region from 200 km to 1000 km has been a blind area for traditional ground-based activ...

  • Article
  • Open Access
2 Citations
2,106 Views
11 Pages

The Generation of Circularly Polarized Isolated Attosecond Pulses with Tunable Helicity from CO Molecules in Polarization Gating Laser Fields

  • Shiju Chen,
  • Hua Yuan,
  • Feng Wang,
  • Jiahang Song,
  • Yue Zhao,
  • Chunhui Yang,
  • Tianxin Ou,
  • Ru Zhang,
  • Qiang Chang and
  • Yuping Sun

We theoretically demonstrate a scheme to generate circularly polarized (CP) isolated attosecond pulses (IAPs) with tunable helicity using a polarization gating laser field interacting with the CO molecule. The results show that a broadband CP superco...

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Photonics - ISSN 2304-6732