清华主页 EN
导航菜单

Quantum advantage for near-term and fault-tolerant quantum computers

来源: 03-26

时间:Thur., 16:00-17:30, Mar. 27, 2025

地点:B627, Shuangqing Complex Building A

组织者:Song Cheng, Zhengwei Liu, Ziwen Liu, Dawei Ding, Jinpeng Liu

主讲人:Xiao Yuan

YMSC-BIMSA Quantum Information Seminar



Organizers:

Song Cheng, Zhengwei Liu, Ziwen Liu, Dawei Ding, Jinpeng Liu

Speaker:

Xiao Yuan 袁骁 (Peking University)

Time:

Thur., 16:00-17:30, Mar. 27, 2025

Venue:

B627, Shuangqing Complex Building A



Online:

Zoom Meeting ID: 2938129202

Passcode: BIMSA



Title:

Quantum advantage for near-term and fault-tolerant quantum computers



Abstract:

Quantum computers have the potential to solve classically intractable problems. However, realizing a universal quantum computer is challenging with current technology. Before having a fully-fledged quantum computer, a more realistic question is what we can do with current and near-term quantum hardware. In this talk, I will first review the quantum algorithms that are designed for near-term and fault-tolerant quantum computers. Then, I will introduce our recent works about classical simulation of quantum processes. Finally, we discuss the possibility of achieving quantum advantages in the early-fault tolerant era.

Speaker Intro: Dr. Xiao Yuan received his Bachelor in theoretical physics from Peking University in 2012 and got his PhD in physics from Tsinghua University in 2016. Then he worked as a postdoc at University of Science and Technology China in 2017, at Oxford University from 2017 to 2019, and at Stanford University from 2019 to 2020. He is now an assistant professor at Center on Frontiers of Computing Studies, Peking University. Dr. Xiao Yuan’s current research interests focus on near-term and universal quantum computing, and their applications.

返回顶部
相关文章
  • Towards fault-tolerant quantum computation: near term and the future

    AbstractQuantum error-correcting codes (QECCs) can eliminate the negative effects of quantum noise, the major obstacle to the execution of quantum algorithms on large-scale quantum computers. However, realizing practical quantum error correction (QEC) and fault-tolerant quantum computation (FTQC) requires resolving many challenges, both theoretical and practical. These challenges include tremen...

  • Introduction to Quantum Computation

    Record: YesLevel: GraduateLanguage: EnglishPrerequisiteQuantum Mechanics, Linear AlgebraAbstractIn this course, I present a self-consistent review of fault-tolerant quantum computation using the surface code. The course covers everything required to understand topological fault-tolerant quantum computation, ranging from the definition of the surface code to topological quantum error correction ...