日本語

Tsinghua University makes progress in the field of pre sensing optical computing

215
2024-08-05 14:03:15
翻訳を見る

In the era of the Internet of Things, visual image sensors, as key devices in the intelligent society, are embedded in various devices such as mobile communication terminals, smart wearable devices, automobiles, and industrial machines. With the continuous expansion of applications, higher requirements have been put forward for the system power consumption, response speed, safety performance, and other aspects of sensors. In the traditional "sensory transmission computing" link, the access speed of memory and communication bandwidth have gradually become the main bottlenecks limiting system power consumption and speed. Moving the computing unit closer to the sensing unit has gradually become a powerful way to solve this problem, as it enables the near sensing end of the system to have certain data processing capabilities. Compared to other proximity computing methods, pre sensing light computing has the advantages of high speed, high bandwidth, and low power consumption. However, currently the vast majority of optical neural networks require coherent lasers as light sources, with bulky and complex hardware systems that can only perform linear operations and lack interlayer nonlinear activation, which limits the application of pre sensing light computing in edge scenes.

Figure 1. Paradigm of Near Sensor Computing in Machine Vision Link

Professor Chen Hongwei's team from the Department of Electronic Engineering at Tsinghua University proposed a compact passive multilayer optical neural network (MONN) architecture, which consists of a passive mask and a quantum dot thin film, to complete multilayer optical calculations with interlayer nonlinear activation under incoherent light illumination. The optical length of this architecture is as short as 5 millimeters, which is 2 orders of magnitude smaller than existing lens based optical neural networks. Experimental results have shown that this multi-layer computing architecture outperforms linear single-layer computing in various visual tasks, and can transfer up to 95% of computations from the electrical domain to the optical domain. This architecture has the advantages of small size, low power consumption, and high practicality, and is expected to be deployed in mobile visual scenarios such as autonomous driving, intelligent manufacturing, and virtual reality in the future.

Figure 2. Multi layer pre sensing optical neural network architecture and interlayer nonlinear activation function measurement

Meanwhile, the absorption and emission spectra of CdSe quantum dots overlap within the wavelength range. By designing, the absorption and excitation spectra of the front and rear quantum dots can be aligned, enabling cascading and expansion of existing three-layer architectures to more layers. The MONN architecture can also be combined with other proximity computing paradigms to complete complex computing functions.

Recently, the related research results were published in Science Advances under the title "Pre sensor Computing with Compact Multi layer Optical Neural Network". The Department of Electronic Engineering at Tsinghua University is the first unit of the paper, Chen Hongwei is the corresponding author of the paper, and Huang Zheng, a doctoral student from the Department of Electronics in 2020, is the first author of the paper. The research has received support from the National Natural Science Foundation of China and the Beijing Municipal Science and Technology Commission.

Source: Opticsky

関連のおすすめ
  • Lidar manufacturer RAYZ has completed a round A financing of nearly 100 million yuan

    Recently, RAYZ, a leading research and production company for high-performance LiDAR, announced the successful completion of the A-round financing. This round of financing was led by SMIC Juyuan, and well-known institutions such as Juntong Capital, Feitu Capital, Qiandao Investment, and Qiyu Chuangying also participated in this round of financing. The new round of financing will be used for the re...

    2023-10-20
    翻訳を見る
  • Innovating Photonics: Lithium Tantalate Provides Power for the Next Generation of Optoelectronic Circuits

    The new photonic integrated circuit technology based on lithium tantalate has improved cost efficiency and scalability, making significant progress in the fields of optical communication and computing.The rapid development of photonic integrated circuits (PICs) has revolutionized optical communication and computing systems, combining multiple optical devices and functions on a single chip.For deca...

    2024-05-14
    翻訳を見る
  • Topological high-order harmonic spectroscopy in Communications Physics

    It is reported that researchers from the University of Salamanca in Spain have demonstrated a high-order harmonic spectroscopy scheme generated by the interaction between a structured driving beam and a crystal solid target. This work promotes the topological analysis of high-order harmonic fields as a spectroscopic tool to reveal nonlinearity in the coupling of light and target symmetry. The rele...

    2024-01-15
    翻訳を見る
  • French laser giant's profits decline, laser radar business restructuring

    Recently, Marvel Fusion, a pioneer in the field of laser fusion, successfully raised 62.8 million euros (approximately 70.3 million US dollars) in funding. This funding will provide strong impetus for its fusion technology demonstration on existing laser equipment and accelerate the comprehensive technology validation process at its facility in Colorado, with the goal of achieving this milestone b...

    2024-10-09
    翻訳を見る
  • Entangled photon pairs generated by quantum light sources can be used for quantum computing and cryptography

    A new device composed of semiconductor rings generates pairs of entangled photons, which can be used in photon quantum processors.Quantum light sources generate entangled photon pairs, which can be used in quantum computing and cryptography. A new experiment has demonstrated a quantum light source made from semiconductor gallium nitride. This material provides a multifunctional platform for devic...

    2024-03-30
    翻訳を見る