Patents by Inventor Yuqing Deng

Yuqing Deng has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20240151666
    Abstract: The present application discloses a method for calibrating a parameter error of an electron probe microanalysis instrument. A one-dimensional grating standard template is prepared based on atom lithography technology. A theoretical grating period D of the one-dimensional grating standard template is calculated. The one-dimensional grating standard template is statically placed on a stage of the electron probe microanalysis instrument. The electron probe microanalysis instrument scans the one-dimensional grating standard template on the stage, performs image acquisition and measurement on a grid distance of the one-dimensional grating standard template to obtain a grating scanning distance measurement value L, and records a magnification ratio at this time. A calibration factor K under the magnification ratio is calculated according to D and L.
    Type: Application
    Filed: December 15, 2022
    Publication date: May 9, 2024
    Applicants: Shanghai Institute of Measurement and Testing Technology, Tongji University
    Inventors: Lihua LEI, Chengming CAO, Yingfan XIONG, Zhangning XIE, Xiao DENG, Xinbin CHENG, Yuqing GUAN, Wenzhe ZOU, Yunxia FU
  • Publication number: 20210035660
    Abstract: A method for computing free energy difference between a reference molecule and a target molecule. The target molecule has the common set of atoms PAB and a set of atoms PB. The method includes applying a potential to restrain an interaction of the additional atomic component from the set of atoms PB with the common set of atoms PAB in the initial state. The method includes determining one or more transition states along a transformation path between the initial state and target state. The method includes scaling the restrain potential correspondingly along the transformation path until the potential becomes zero when a corresponding end state is reached, and calculating the free energy difference between the reference molecule and the target molecule using a value obtained along the transformation path from the initial state to the target state.
    Type: Application
    Filed: July 15, 2020
    Publication date: February 4, 2021
    Inventors: Lingle Wang, Yuqing Deng, Yujie Wu, Byungchan Kim, Robert L. Abel
  • Patent number: 10726946
    Abstract: A method for computing free energy difference between a reference molecule and a target molecule. The target molecule has the common set of atoms PAB and a set of atoms PB. The method includes applying a potential to restrain an interaction of the additional atomic component from the set of atoms PB with the common set of atoms PAB in the initial state. The method includes determining one or more transition states along a transformation path between the initial state and target state. The method includes scaling the restrain potential correspondingly along the transformation path until the potential becomes zero when a corresponding end state is reached, and calculating the free energy difference between the reference molecule and the target molecule using a value obtained along the transformation path from the initial state to the target state.
    Type: Grant
    Filed: August 22, 2017
    Date of Patent: July 28, 2020
    Assignee: Schrödinger, Inc.
    Inventors: Lingle Wang, Yuqing Deng, Yujie Wu, Byungchan Kim, Robert L. Abel
  • Publication number: 20190065697
    Abstract: A method for computing free energy difference between a reference molecule and a target molecule. The target molecule has the common set of atoms PAB and a set of atoms PB. The method includes applying a potential to restrain an interaction of the additional atomic component from the set of atoms PB with the common set of atoms PAB in the initial state. The method includes determining one or more transition states along a transformation path between the initial state and target state. The method includes scaling the restrain potential correspondingly along the transformation path until the potential becomes zero when a corresponding end state is reached, and calculating the free energy difference between the reference molecule and the target molecule using a value obtained along the transformation path from the initial state to the target state.
    Type: Application
    Filed: August 22, 2017
    Publication date: February 28, 2019
    Inventors: Lingle Wang, Yuqing Deng, Yujie Wu, Byungchan Kim, Robert Abel