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  1. 1

    The Effect of Carrier Water Temperature on Glyphosate Efficiency in Pure and Mixed With PC Gate Surfactant in Winter Weeds Control by Ali Asghar Chitband

    Published 2024-02-01
    “…One of the important environmental factors for herbicides efficiency is carrier water temperature. To evaluation of Glyphosate (Roundup) with and without PC Gate surfactant on three weeds of Capsella bursa-pastoris L., Sinapis arvensis L. and Descurainia sophia L. control, three experiments carried out with six doses of applied herbicide active ingredients (a.i.) at the outdoor greenhouse of Agricultural Faculty of Lorestan University, Iran, during 2021. …”
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  2. 2

    Efficient fault-tolerant implementations of non-Clifford gates with reconfigurable atom arrays by Yifei Wang, Yixu Wang, Yu-An Chen, Wenjun Zhang, Tao Zhang, Jiazhong Hu, Wenlan Chen, Yingfei Gu, Zi-Wen Liu

    Published 2024-12-01
    “…We demonstrate that several characteristic features of the reconfigurable atom array platform are inherently well-suited for addressing this key challenge, potentially leading to significant advantages in fidelity and efficiency. Specifically, we consider a series of different strategies, including magic state distillation, concatenated code array, and fault-tolerant logical multi-controlled-Z gates, leveraging key platform features such as nonlocal connectivity, parallel gate action, collective mobility, and native multi-controlled-Z gates. …”
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  3. 3

    An electronic gear concept for optimized efficiency operation of automotive converters by Tanya Thekemuriyil, Munaf T.A. Rahimo, Silvia Mastellone, Renato Amaral Minamisawa, Thiago Batista Soeiro

    Published 2025-03-01
    “…Specifically, the converter controller selectively activates each transistor using dedicated gate units allowing it to choose the most efficient area ratio of SiC MOSFETs to Si IGBTs in the specific operating point of the vehicle's real-time torque-speed profile. …”
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    Design of Fixed Cell-Based Programmable Logic Gate Using Quantum-Dot CA for Efficiency and Reliability of Digital Systems by Jun-Cheol Jeon

    Published 2024-01-01
    “…In the design of medium and large circuits, reducing the number of gates is a significant development task that simplifies circuit design and improves the efficiency and reliability of digital system manufacturing.…”
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  6. 6

    Highly durable and energy‐efficient probabilistic bits based on h‐BN/SnS2 interface for integer factorization by Joon‐Kyu Han, Jun‐Young Park, Shania Rehman, Muhammad Farooq Khan, Moon‐Seok Kim, Sungho Kim

    Published 2025-07-01
    “…Abstract As social networks and related data processes have grown exponentially in complexity, the efficient resolution of combinatorial optimization problems has become increasingly crucial. …”
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  7. 7

    High Efficiency High Power Density Bidirectional Non-Isolated LLC Converter With Transformer-Coupled Gate Driver for 48 V MHEV by Song Ding, Chunyan Nie, Qi Liu, Qinsong Qian, Weifeng Sun

    Published 2025-01-01
    “…This driver circuit consumes only 18.7% of the power of conventional gate drive circuits, thereby ensuring high efficiency and power density in the converter. …”
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  8. 8

    Efficient Multi-Scale Transformer With Convolutional Attention for High-Definition Image Dehazing by Zhirui Wang

    Published 2025-01-01
    “…Mulsormer incorporates Multi-Head Convolutional Attention (MHCA) and a Gated Feed-Forward Network (GFFN) to reduce computational complexity and control critical information flow, respectively. …”
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  9. 9

    Efficient Control of a Transmon Qudit Using Effective Spin-7/2 Rotations by Elizabeth Champion, Zihao Wang, Rayleigh W. Parker, Machiel S. Blok

    Published 2025-06-01
    “…In the latter experiment, we implement the d-dimensional quantum Fourier transform with an average gate fidelity of 0.91(6) in d=8. Our multifrequency approach to qudit control and measurement can be readily extended to other physical platforms that realize a multilevel system coupled to a cavity and can become a building block for efficient qudit-based quantum computation and simulation.…”
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  10. 10

    3 300 V IGBT / FRD Chipset Design and Development for Traction Application by LIU Guo-you, QIN Rong-zhen, Ian Deviny, HUANG Jian-wei

    Published 2013-01-01
    “…According to the IGBT characteristics and requirements for traction application, the simulation technique was used on the termination structure design to improve the blocking voltage. The terraced gate structure was developed to increase the switching speed, by adopting the carrier injection efficiency to realize a trade off between on state loss and turn off energy to reduce the total IGBT loss. …”
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  11. 11

    Group twirling and noise tailoring for multiqubit controlled phase gates by Guoding Liu, Ziyi Xie, Zitai Xu, Xiongfeng Ma

    Published 2024-12-01
    “…While protocols based on Pauli twirling have been effectively crafted to transform arbitrary noise channels into Pauli channels for Clifford gates—thereby facilitating efficient benchmarking and mitigating worst-case errors—the lack of practical twirling groups for multiqubit non-Clifford gates remains a challenge. …”
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    Energy-efficient and reliable dual closed-loop DC control system for intelligent electric vehicle charging infrastructure. by Jun Li, Wan Chen, Xiaoqiong Zhu, Baoguo Zang, Cong Zhang, Hengxiao Hu, Ming Zhang, Wenbao Lei

    Published 2024-01-01
    “…This study presents an innovative dual closed-loop DC control system for intelligent electric vehicle (EV) charging infrastructure, designed to address the challenges of high power factor, low harmonic pollution, and high efficiency in EV charging applications. …”
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  14. 14

    Constructing resource-efficient quantum circuits for AES by Liao-Liang Jiang, Liao-Liang Jiang, Bin-Bin Cai, Fei Gao, Fei Gao, Fei Gao, Su-Juan Qin, Su-Juan Qin, Su-Juan Qin, Zheng-Ping Jin, Zheng-Ping Jin, Zheng-Ping Jin, Qiao-Yan Wen, Qiao-Yan Wen, Qiao-Yan Wen

    Published 2025-04-01
    “…In this paper, we study how to construct resource-efficient quantum circuits for AES. We consider the product of T-gates depth and width (TDW) and the product of full depth and width (FDW) as optimization targets. …”
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  15. 15

    Research on the Impact of Gate Engineering on Seawater Exchange Capacity by Mingchang Li, Xinran Jiang, Aizhen Liu

    Published 2025-05-01
    “…Through intelligent scheduling of exchange sluice gates, systematic gate parameter optimization, and active control of gate opening, this approach achieves intelligent seawater exchange, optimized flow dynamics, active exchange, and sustained ecological water levels in enclosed coastal water bodies.…”
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  16. 16

    Efficient sparse state preparation via quantum walks by Alvin Gonzales, Rebekah Herrman, Colin Campbell, Igor Gaidai, Ji Liu, Teague Tomesh, Zain H. Saleem

    Published 2025-08-01
    “…In this work, we develop an algorithm that converts single-edge and self-loop dynamic CTQWs to the gate model of computation. We use this mapping to introduce an efficient sparse quantum state preparation framework based on dynamic CTQWs. …”
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  17. 17

    A 4–40 V Input Floating–Ground GaN-Based Buck–Boost Converter With Pre-Charge Function for Enhanced Power Efficiency by Weizhong Chen, Lei Chen, Ping Gui

    Published 2025-01-01
    “…It employs a new floating-ground three-state four-switch topology along with a pre-charge gate driver for the low-side GaN switch, a Dual Duty-Cycle Controller (DDCC) and an Inductor Peak Current (<inline-formula> <tex-math notation="LaTeX">$I_{LPEAK}$ </tex-math></inline-formula>) adjusting Module (IPCM). …”
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  18. 18

    A dual-domain perception gate-controlled adaptive fusion algorithm for road crack detection by Ziyang Zhang, Yong’an Feng

    Published 2025-07-01
    “…Building upon the identified limitations, this paper proposes a dual-domain perception gate-controlled adaptive fusion network (DP-DETR) that achieves dynamic perception of salient features across channel and spatial domains within latent space. …”
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  19. 19

    Unifying Non-Markovian Characterization with an Efficient and Self-Consistent Framework by G. A. L. White, P. Jurcevic, C. D. Hill, K. Modi

    Published 2025-05-01
    “…Our framework is universal, assumes no parameters values, and is written entirely in terms of experimentally accessible circuit-level quantities. We formulate an efficient reconstruction using tensor network learning, allowing also for easy modularization and simplification based on the expected physics of the system. …”
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