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Frequency-comb-linearized, widely tunable lasers for coherent ranging 用于相干测距的梳状线性化宽调谐激光器
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-03-18 DOI: 10.1364/prj.510795
Baoqi Shi, Yi-Han Luo, Wei Sun, Yue Hu, Jinbao Long, Xue Bai, Anting Wang, and Junqiu Liu
Tunable lasers, with the ability to continuously vary their emission wavelengths, have found widespread applications across various fields such as biomedical imaging, coherent ranging, optical communications, and spectroscopy. In these applications, a wide chirp range is advantageous for large spectral coverage and high frequency resolution. Besides, the frequency accuracy and precision also depend critically on the chirp linearity of the laser. While extensive efforts have been made on the development of many kinds of frequency-agile, widely tunable, narrow-linewidth lasers, wideband yet precise methods to characterize and linearize laser chirp dynamics are also demanded. Here we present an approach to characterize laser chirp dynamics using an optical frequency comb. The instantaneous laser frequency is tracked over terahertz bandwidth at 1 MHz intervals. Using this approach we calibrate the chirp performance of 12 tunable lasers from Toptica, Santec, New Focus, EXFO, and NKT that are commonly used in fiber optics and integrated photonics. In addition, with acquired knowledge of laser chirp dynamics, we demonstrate a simple frequency-linearization scheme that enables coherent ranging without any optical or electronic linearization unit. Our approach not only presents novel wideband, high-resolution laser spectroscopy, but is also critical for sensing applications with ever-increasing requirements on performance.
可调谐激光器能够连续改变其发射波长,在生物医学成像、相干测距、光通信和光谱学等各个领域得到了广泛应用。在这些应用中,较宽的啁啾范围有利于实现较大的光谱覆盖范围和较高的频率分辨率。此外,频率精度和准确度还在很大程度上取决于激光器的啁啾线性度。在大力发展多种频率灵活、可调谐范围广、线宽窄的激光器的同时,人们也需要宽带但精确的方法来表征激光啁啾动态并使其线性化。在此,我们介绍一种利用光学频率梳表征激光啁啾动态的方法。在太赫兹带宽上以 1 MHz 的间隔跟踪激光瞬时频率。利用这种方法,我们校准了 Toptica、Santec、New Focus、EXFO 和 NKT 等公司生产的 12 种可调谐激光器的啁啾性能,这些激光器常用于光纤和集成光子学领域。此外,利用已掌握的激光啁啾动态知识,我们展示了一种简单的频率线性化方案,无需任何光学或电子线性化单元即可实现相干测距。我们的方法不仅提供了新颖的宽带、高分辨率激光光谱学,而且对于性能要求不断提高的传感应用也至关重要。
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引用次数: 0
Deep learning-based optical aberration estimation enables offline digital adaptive optics and super-resolution imaging 基于深度学习的光学像差估计可实现离线数字自适应光学和超分辨率成像
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-03-01 DOI: 10.1364/prj.506778
Chang Qiao, Haoyu Chen, Run Wang, Tao Jiang, Yuwang Wang, and Dong Li
Optical aberrations degrade the performance of fluorescence microscopy. Conventional adaptive optics (AO) leverages specific devices, such as the Shack–Hartmann wavefront sensor and deformable mirror, to measure and correct optical aberrations. However, conventional AO requires either additional hardware or a more complicated imaging procedure, resulting in higher cost or a lower acquisition speed. In this study, we proposed a novel space-frequency encoding network (SFE-Net) that can directly estimate the aberrated point spread functions (PSFs) from biological images, enabling fast optical aberration estimation with high accuracy without engaging extra optics and image acquisition. We showed that with the estimated PSFs, the optical aberration can be computationally removed by the deconvolution algorithm. Furthermore, to fully exploit the benefits of SFE-Net, we incorporated the estimated PSF with neural network architecture design to devise an aberration-aware deep-learning super-resolution model, dubbed SFT-DFCAN. We demonstrated that the combination of SFE-Net and SFT-DFCAN enables instant digital AO and optical aberration-aware super-resolution reconstruction for live-cell imaging.
光学像差会降低荧光显微镜的性能。传统的自适应光学(AO)利用 Shack-Hartmann 波前传感器和可变形镜等特定设备来测量和校正光学像差。然而,传统的自适应光学需要额外的硬件或更复杂的成像程序,导致成本增加或采集速度降低。在这项研究中,我们提出了一种新颖的空间频率编码网络(SFE-Net),它可以直接从生物图像中估算出畸变点扩散函数(PSF),从而实现高精度的快速光学畸变估算,而无需额外的光学设备和图像采集。我们的研究表明,有了估计出的 PSF,就可以通过解卷积算法计算去除光学像差。此外,为了充分发挥 SFE-Net 的优势,我们将估计的 PSF 与神经网络架构设计相结合,设计出了一种畸变感知深度学习超分辨率模型,命名为 SFT-DFCAN。我们证明,SFE-Net 和 SFT-DFCAN 的结合可实现活细胞成像的即时数字 AO 和光学像差感知超分辨率重建。
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引用次数: 0
Large-scale error-tolerant programmable interferometer fabricated by femtosecond laser writing 利用飞秒激光写入技术制造大规模容错可编程干涉仪
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-03-01 DOI: 10.1364/prj.504588
Ilya Kondratyev, Veronika Ivanova, Suren Fldzhyan, Artem Argenchiev, Nikita Kostyuchenko, Sergey Zhuravitskii, Nikolay Skryabin, Ivan Dyakonov, Mikhail Saygin, Stanislav Straupe, Alexander Korneev, and Sergei Kulik
We introduce a programmable eight-port interferometer with the recently proposed error-tolerant architecture capable of performing a broad class of transformations. The interferometer has been fabricated with femtosecond laser writing, and it is the largest programmable interferometer of this kind to date. We have demonstrated its advantageous error tolerance by showing an operation in a broad wavelength range from 920 to 980 nm, which is particularly relevant for quantum photonics due to efficient photon sources existing in this wavelength range. Our work highlights the importance of developing novel architectures of programmable photonics for information processing.
我们介绍了一种可编程八端口干涉仪,它采用了最近提出的容错架构,能够执行多种变换。该干涉仪是用飞秒激光写入技术制造的,是迄今为止同类产品中最大的可编程干涉仪。我们在 920 至 980 nm 的宽波长范围内进行了操作,证明了它具有良好的容错性,由于这一波长范围内存在高效光子源,这与量子光子学尤其相关。我们的工作凸显了开发用于信息处理的新型可编程光子学架构的重要性。
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引用次数: 0
Extreme single-excitation subradiance from two-band Bloch oscillations in atomic arrays 原子阵列中双波段布洛赫振荡产生的极端单激发子辐照度
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-03-01 DOI: 10.1364/prj.506450
Luojia Wang, Da-Wei Wang, Luqi Yuan, Yaping Yang, and Xianfeng Chen
Atomic arrays provide an important quantum optical platform with photon-mediated dipole–dipole interactions that can be engineered to realize key applications in quantum information processing. A major obstacle for such applications is the fast decay of the excited states. By controlling two-band Bloch oscillations of single excitation in an atomic array under an external magnetic field, here we show that exotic subradiance can be realized and maintained with orders of magnitude longer than the spontaneous decay time in atomic arrays with the finite size. The key finding is to show a way for preventing the wavepacket of excited states scattering into the dissipative zone inside the free space light cone, which therefore leads to the excitation staying at a subradiant state for an extremely long decay time. We show that such operation can be achieved by introducing a spatially linear potential from the external magnetic field in the atomic arrays and then manipulating interconnected two-band Bloch oscillations along opposite directions. Our results also point out the possibility of controllable switching between superradiant and subradiant states, which leads to potential applications in quantum storage.
原子阵列提供了一个重要的量子光学平台,通过光子介导的偶极-偶极相互作用,可以实现量子信息处理的关键应用。此类应用的一个主要障碍是激发态的快速衰减。通过在外加磁场下控制原子阵列中单次激发的双波段布洛赫振荡,我们在这里展示了在有限尺寸的原子阵列中,奇异的亚辐照度可以实现并保持,而且比自发衰减时间长几个数量级。我们的主要发现是找到了防止激发态波包散射到自由空间光锥内部耗散区的方法,从而使激发态在亚辐射状态下保持极长的衰减时间。我们的研究表明,在原子阵列中引入来自外部磁场的空间线性电势,然后沿相反方向操纵相互连接的双波段布洛赫振荡,就能实现这种操作。我们的研究结果还指出了在超辐射态和亚辐射态之间进行可控切换的可能性,这将为量子存储带来潜在的应用前景。
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引用次数: 0
Chiral forces in longitudinally invariant dielectric photonic waveguides 纵向不变介电光子波导中的手性力
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-02-26 DOI: 10.1364/prj.509634
Josep Martínez-Romeu, Iago Diez, Sebastian Golat, Francisco J. Rodríguez-Fortuño, and Alejandro Martínez
We calculate numerically the optical chiral forces in rectangular cross-section dielectric waveguides for potential enantiomer separation. Our study considers force strength and time needed for separating chiral nanoparticles, mainly via quasi-TE guided modes at short wavelengths (405 nm) and the 90°-phase-shifted combination of quasi-TE and quasi-TM modes at longer wavelengths (1310 nm). Particle tracking simulations show successful enantiomer separation within two seconds. These results suggest the feasibility of enantiomeric separation of nanoparticles displaying sufficient chirality using simple silicon photonic integrated circuits, with wavelength selection based on the nanoparticle size.
我们对矩形截面电介质波导中的光学手性力进行了数值计算,以实现潜在的对映体分离。我们的研究考虑了分离手性纳米粒子所需的力强度和时间,主要是通过短波长(405 nm)下的准TE 导向模式和长波长(1310 nm)下的准TE 和准TM 模式的 90° 相移组合。粒子跟踪模拟显示,对映体在两秒钟内就能成功分离。这些结果表明,利用简单的硅光子集成电路,并根据纳米粒子的大小选择波长,就能实现具有足够手性的纳米粒子的对映体分离。
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引用次数: 0
Observation of gapless corner modes of photonic crystal slabs in synthetic translation dimensions 在合成平移尺寸中观测光子晶体板的无间隙角模式
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-02-26 DOI: 10.1364/prj.506167
Wen-Jin Zhang, Hao-Chang Mo, Wen-Jie Chen, Xiao-Dong Chen, and Jian-Wen Dong
Second-order topological photonic crystals support localized corner modes that deviate from the conventional bulk-edge correspondence. However, the frequency shift of corner modes spanning the photonic band gap has not been experimentally reported. Here, we observe the gapless corner modes of photonic crystal slabs within a parameter space by considering translation as an additional synthetic dimension. These corner modes, protected by topological pumping in synthetic translation dimensions, are found to exist independently of the specific corner configuration. The gapless corner modes are experimentally imaged via the near-field scanning measurement and validated numerically by full-wave simulations. We propose a topological rainbow with gradient translation, demonstrating the ability to extract and separate specific frequency components of light into different spatial locations. Our work contributes to the advancement of topological photonics and provides valuable insights into the exploration of gapless corner modes in synthetic dimensions.
二阶拓扑光子晶体支持偏离传统体边对应关系的局部角模式。然而,跨越光子带隙的角模式的频率偏移还没有实验报告。在这里,我们将平移视为额外的合成维度,从而观察到光子晶体板在参数空间内的无间隙角模。这些角模式在合成平移维度中受到拓扑泵的保护,其存在与具体的角配置无关。我们通过近场扫描测量对无间隙角模式进行了实验成像,并通过全波模拟对其进行了数值验证。我们提出了一种具有梯度平移功能的拓扑彩虹,展示了将光的特定频率成分提取并分离到不同空间位置的能力。我们的工作有助于拓扑光子学的发展,并为探索合成维度的无间隙角模式提供了宝贵的见解。
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引用次数: 0
Optical colorimetric LiTaO3 wafers for high-precision lithography on frequency control of SAW devices 用于声表面波器件频率控制高精度光刻的光学比色钽酸锂晶片
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-02-01 DOI: 10.1364/prj.499795
Ming Hui Fang, Yinong Xie, Fangqi Xue, Zhilin Wu, Jun Shi, Sheng Yu Yang, Yilin Liu, Zhihuang Liu, Hsin Chi Wang, Fajun Li, Qing Huo Liu, and Jinfeng Zhu
Surface acoustic wave (SAW) resonators based on lithium tantalate (LT, LiTaO3) wafers are crucial elements of mobile communication filters. The use of intrinsic LT wafers typically brings about low fabrication accuracy of SAW resonators due to strong UV reflection in the lithography process. This hinders their resonance frequency control seriously in industrial manufacture. LT doping and chemical reduction could be applied to decrease the UV reflection of LT wafers for high lithographic precision. However, conventional methods fail to provide a fast and nondestructive approach to identify the UV performance of standard single-side polished LT wafers for high-precision frequency control. Here, we propose a convenient on-line sensing scheme based on the colorimetry of reduced Fe-doped LT wafers and build up an automatic testing system for industrial applications. The levels of Fe doping and chemical reduction are evaluated by the lightness and color difference of LT-based wafers. The correlation between the wafer visible colorimetry and UV reflection is established to refine the lithography process and specifically manipulate the frequency performance of SAW resonators. Our study provides a powerful tool for the fabrication control of SAW resonators and will inspire more applications on sophisticated devices of mobile communication.
基于钽酸锂(LT,LiTaO3LiTaO3)晶片的声表面波(SAW)谐振器是移动通信滤波器的关键元件。由于在光刻过程中会产生强烈的紫外线反射,使用本征钽酸锂晶片通常会导致声表面波谐振器的制造精度较低。这严重影响了工业生产中对谐振频率的控制。为了实现高光刻精度,可以采用掺杂 LT 和化学还原的方法来降低 LT 硅片的紫外线反射。然而,传统方法无法提供一种快速、无损的方法来识别用于高精度频率控制的标准单面抛光 LT 硅片的紫外线性能。在此,我们提出了一种基于还原掺铁 LT 硅片比色法的便捷在线检测方案,并建立了一套适用于工业应用的自动测试系统。铁掺杂和化学还原水平通过基于 LT 的晶片的亮度和色差进行评估。建立了晶片可见光比色法与紫外反射之间的相关性,从而完善了光刻工艺,并有针对性地控制了声表面波谐振器的频率性能。我们的研究为声表谐振器的制造控制提供了强有力的工具,并将在移动通信的精密设备上激发更多应用。
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引用次数: 0
Computational and dark-field ghost imaging with ultraviolet light 利用紫外线进行计算和暗场鬼影成像
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-01-29 DOI: 10.1364/prj.503974
Jiaqi Song, Baolei Liu, Yao Wang, Chaohao Chen, Xuchen Shan, Xiaolan Zhong, Ling-An Wu, and Fan Wang
Ultraviolet (UV) imaging enables a diverse array of applications, such as material composition analysis, biological fluorescence imaging, and detecting defects in semiconductor manufacturing. However, scientific-grade UV cameras with high quantum efficiency are expensive and include complex thermoelectric cooling systems. Here, we demonstrate a UV computational ghost imaging (UV-CGI) method to provide a cost-effective UV imaging and detection strategy. By applying spatial–temporal illumination patterns and using a 325 nm laser source, a single-pixel detector is enough to reconstruct the images of objects. We use UV-CGI to distinguish four UV-sensitive sunscreen areas with different densities on a sample. Furthermore, we demonstrate dark-field UV-CGI in both transmission and reflection schemes. By only collecting the scattered light from objects, we can detect the edges of pure phase objects and small scratches on a compact disc. Our results showcase a feasible low-cost solution for nondestructive UV imaging and detection. By combining it with other imaging techniques, such as hyperspectral imaging or time-resolved imaging, a compact and versatile UV computational imaging platform may be realized for future applications.
紫外线(UV)成像可用于多种应用,如材料成分分析、生物荧光成像和半导体制造中的缺陷检测。然而,具有高量子效率的科学级紫外相机价格昂贵,而且还包括复杂的热电冷却系统。在此,我们展示了一种紫外计算鬼影成像(UV-CGI)方法,以提供一种经济高效的紫外成像和检测策略。通过应用时空照明模式和使用 325 nm 激光源,单像素探测器足以重建物体图像。我们使用 UV-CGI 来区分样品上四个不同密度的紫外线敏感防晒区。此外,我们还展示了透射和反射方案下的暗场 UV-CGI 技术。通过只收集物体的散射光,我们可以检测纯相物体的边缘和光盘上的小划痕。我们的成果展示了一种可行的低成本无损紫外成像和检测解决方案。通过将其与其他成像技术(如高光谱成像或时间分辨成像)相结合,可以为未来的应用实现一个紧凑、多功能的紫外计算成像平台。
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引用次数: 0
Silicon Photonic Integrated Interrogator for Fiber-Optic Distributed Acoustic Sensing 用于光纤分布式声学传感的硅光子集成探测仪
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-01-03 DOI: 10.1364/prj.512298
Zhicheng Jin, Jiageng Chen, Yanming Chang, Qingwen Liu, Zuyuan He
{"title":"Silicon Photonic Integrated Interrogator for Fiber-Optic Distributed Acoustic Sensing","authors":"Zhicheng Jin, Jiageng Chen, Yanming Chang, Qingwen Liu, Zuyuan He","doi":"10.1364/prj.512298","DOIUrl":"https://doi.org/10.1364/prj.512298","url":null,"abstract":"","PeriodicalId":20048,"journal":{"name":"Photonics Research","volume":"18 22","pages":""},"PeriodicalIF":7.6,"publicationDate":"2024-01-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"139388976","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":1,"RegionCategory":"物理与天体物理","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
引用次数: 0
Wafer-level Substrate-free YIG Single Crystal Film for Broadband Tunable Terahertz Isolator 用于宽带可调谐太赫兹隔离器的晶圆级无基底 YIG 单晶膜
IF 7.6 1区 物理与天体物理 Q1 OPTICS Pub Date : 2024-01-03 DOI: 10.1364/prj.509876
Xilai Zhang, Zhao Dan, Ding Zhang, Qiang Xue, Fei Fan, Yulong Liao, Qing-Hui Yang, Qi-Ye Wen
{"title":"Wafer-level Substrate-free YIG Single Crystal Film for Broadband Tunable Terahertz Isolator","authors":"Xilai Zhang, Zhao Dan, Ding Zhang, Qiang Xue, Fei Fan, Yulong Liao, Qing-Hui Yang, Qi-Ye Wen","doi":"10.1364/prj.509876","DOIUrl":"https://doi.org/10.1364/prj.509876","url":null,"abstract":"","PeriodicalId":20048,"journal":{"name":"Photonics Research","volume":"2 4","pages":""},"PeriodicalIF":7.6,"publicationDate":"2024-01-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"139389521","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":1,"RegionCategory":"物理与天体物理","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
引用次数: 0
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Photonics Research
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