visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나

The Dual Mode Quantum Computer

2023.06.28 14:29

admin 조회 수:443

날짜 2023-06-30 11:00 
일시 June 30(Fri), 11:00AM 
장소 E6-6 #1501 
연사 Tommaso Macrì, Senior Research Scientist(QuEra Computing Inc., USA) 

The Dual Mode Quantum Computer(Dr. Tommaso Macrì, QuEra Computing Inc.)

 

■ Date & Time: 11 AM June 30(Fri), 2023

■ Venue: Natural Science Building(E6-1) Rm.1501(자연과학동 공동강의실)

■ Speaker: Tommaso Macrì, Senior Research Scientist, QuEra Computing Inc., USA

■ Title: The Dual Mode Quantum Computer

 

■ Abstract

Gate-based quantum computers have recently become widespread, accessible to all via the cloud. In this noisy intermediate-scale quantum computing era, however, systems are limited in size and capacity in such a way that currently available devices can invariably by simulated with laptops or clusters. With the goal of pushing the edge of computation and enabling discovery via quantum resources, QuEra has recently made public a new concept of quantum computers: machines that are large enough and quantum enough to present a real challenge for classical simulation, albeit being not universal in its programmability. In this talk, we will introduce these neutral-atom analog quantum computers, the concept of Field Programmable Qubit Arrays (FPQA), Aquila - the first publicly available FPQA on the cloud - and its range of applicability for scientific discovery in quantum simulation and dynamics. We will present details on how to encode problems in optimization and frustrated quantum matter in neutral-atom Hamiltonians and cover topics such as the Rydberg blockade and the distinction between analog and digital (gate-based) quantum computing.

 

Poster_The Dual Mode Quantum Computer by QuEra Computing.jpg
번호 날짜 장소 제목
257 2023-01-11 11:00  E6-2 #1323  Directly proving magnetoelastic coupling in a soft ferromagnet using Lorentz 4D-STEM file
256 2023-01-12 14:40  E6-2 #1323  JILA 1D Wannier-Stark optical lattice clock file
255 2022-11-11 11:00  E6-2 #1323  [Update 세미나영상] (응집물리 세미나) Honeycomb oxide heterostructures for quantum spin liquid file
254 2024-01-24 15:00  E6-2 #1323  Determination of single molecule loading rate during mechanotransduction file
253 2023-05-19 11:00  E6-2 #1323  (응집물리 세미나)Dipole condensations in Tilted Bose-Hubbard Chains
252 2023-05-18 16:00  E6-2 #1323  (광학분야 세미나)Dielectric metasurfaces for optimized optical system and spatial light modulators
251 2023-03-17 11:00  E6-2 #1323  (응집물리 세미나)Operando electron microscopy investigation of domain dynamics in twisted van der Waals materials file
250 2022-10-27 16:00  E6-2 #1323  (광학분야 세미나) Cavity optomechanical systems for quantum transduction
249 2022-10-07 11:00  E6-2 #1323  [Update 세미나 영상] (응집물리 세미나) Competing orders in a vanadium-based kagome metal monolayer file
248 2023-05-26 11:00  E6-2 #1323  (응집물리 세미나)Spectral Analyses of Stochastic Charge Trapping in Oxide Heterostructures file
247 2022-09-23 11:00  E6-2 #1323  [Update 세미나 영상] (응집물리 세미나) Steady Floquet-Andreev states in graphene Josephson junctions file
246 2022-12-07 16:00  E6-2 #1323  (광학분야 세미나) Non-Hermitian physics and non-Hermitian singularity
245 2023-09-07 12:00  E6-2 #1323  2023 가을학기 광학분야 및 응집물리 특별세미나 전체 일정 file
244 2022-10-13 16:00  E6-2 #1323  (광학분야 세미나) Ultrafast Optics for Ultra-Precision Metrology and Realization of Flexible/Stretchable Laser-Induced-Graphene Electronics
243 2022-06-03 11:00  E6-2 #1323  (응집물리 세미나) Theoretical Investigation of Exotic Quantum States in Low-dimensional Materials
242 2022-11-03 16:00  E6-2 #1323  (광학분야 세미나) Single-photon emission from low-dimensional materials
241 2023-06-01 16:00  E6-2 #1323  (광학분야 세미나)Quantum sensing using a squeezed light from hot Rb vapor
240 2022-10-28 11:00  E6-2 #1323  [Update 세미나영상] (응집물리 세미나) Machine-Learning-Guided Prediction models and Materials discovery for high Tc cuprates file
239 2024-03-08 11:00  E6-2 #1323  2024 봄학기 광학분야 및 응집물리 특별세미나 전체 일정 file
238 2022-12-09 11:00  E6-2 #1323  [Update 세미나영상](응집물리 세미나) Single-shot measurements of strongly-correlated artificial molecular levels in semiconductor quantum dots file