Friday, May 9, 2025
News PouroverAI
Visit PourOver.AI
No Result
View All Result
  • Home
  • AI Tech
  • Business
  • Blockchain
  • Data Science & ML
  • Cloud & Programming
  • Automation
  • Front-Tech
  • Marketing
  • Home
  • AI Tech
  • Business
  • Blockchain
  • Data Science & ML
  • Cloud & Programming
  • Automation
  • Front-Tech
  • Marketing
News PouroverAI
No Result
View All Result

A new quantum algorithm for classical mechanics with an exponential speedup – Google Research Blog

December 4, 2023
in AI Technology
Reading Time: 2 mins read
0 0
A A
0
Share on FacebookShare on Twitter


Posted by Robin Kothari and Rolando Somma, Research Scientists, Google Research, Quantum AI Team
Quantum computers have the potential to solve certain problems much faster than classical computers. However, most examples of this exponential speedup involve simulating quantum mechanical systems. In a recent study published in Physical Review X (PRX) and presented at the Symposium on Foundations of Computer Science (FOCS) 2023, we introduce a new quantum algorithm that offers an exponential advantage for simulating coupled classical harmonic oscillators. These oscillators are fundamental systems found in various natural phenomena, from electrical circuits to molecular vibrations to bridge mechanics.
In collaboration with Dominic Berry of Macquarie University and Nathan Wiebe of the University of Toronto, we discovered a mapping that transforms systems with coupled oscillators into a problem describing the time evolution of a quantum system. Under certain constraints, this problem can be solved exponentially faster with a quantum computer compared to a classical computer. Additionally, we use this mapping to demonstrate that any problem solvable with a quantum algorithm can be reformulated as a problem involving a network of coupled oscillators, even if there are exponentially many of them.
To enable the simulation of a large number of coupled harmonic oscillators, we developed a mapping that encodes the positions and velocities of the oscillators into the quantum wavefunction of a system of qubits. By utilizing the exponential growth of parameters in a quantum wavefunction, we can encode the information of N oscillators into a system of only log(N) qubits. This allows us to simulate the system more efficiently compared to a classical approach.
We provide two pieces of evidence to demonstrate the exponential advantage of our quantum algorithm. First, we show that our algorithm can efficiently solve the glued-trees problem, a graph problem known to be difficult to solve classically. By recasting the problem as a system of balls and springs, we can leverage the oscillations of the system to find the solution exponentially faster.
Second, we argue that our algorithm is BQP-complete, meaning it belongs to the class of problems that a quantum computer can solve efficiently. If an efficient classical algorithm were to be found for our problem, it would imply that all problems solvable by a quantum computer can also be solved classically. This includes problems like factoring large numbers, which are currently the basis of modern encryption.
This research not only uncovers new applications for quantum computers but also provides insights into the relationship between classical oscillating systems and quantum algorithms. It also opens up possibilities for designing new quantum algorithms based on classical systems. Our work contributes to a deeper understanding of the potential of quantum computing and paves the way for future advancements in the field.



Source link

Tags: AlgorithmBlogclassicalexponentialGooglemechanicsQuantumResearchspeedup
Previous Post

Inside The Cryptocurrency Revolution

Next Post

‘Bloomberg West’ brings you the latest tech news LIVE from Silicon Valley

Related Posts

How insurance companies can use synthetic data to fight bias
AI Technology

How insurance companies can use synthetic data to fight bias

June 10, 2024
From Low-Level to High-Level Tasks: Scaling Fine-Tuning with the ANDROIDCONTROL Dataset
AI Technology

From Low-Level to High-Level Tasks: Scaling Fine-Tuning with the ANDROIDCONTROL Dataset

June 10, 2024
How Game Theory Can Make AI More Reliable
AI Technology

How Game Theory Can Make AI More Reliable

June 9, 2024
Decoding Decoder-Only Transformers: Insights from Google DeepMind’s Paper
AI Technology

Decoding Decoder-Only Transformers: Insights from Google DeepMind’s Paper

June 9, 2024
Buffer of Thoughts (BoT): A Novel Thought-Augmented Reasoning AI Approach for Enhancing Accuracy, Efficiency, and Robustness of LLMs
AI Technology

Buffer of Thoughts (BoT): A Novel Thought-Augmented Reasoning AI Approach for Enhancing Accuracy, Efficiency, and Robustness of LLMs

June 9, 2024
Deciphering Doubt: Navigating Uncertainty in LLM Responses
AI Technology

Deciphering Doubt: Navigating Uncertainty in LLM Responses

June 9, 2024
Next Post
‘Bloomberg West’ brings you the latest tech news LIVE from Silicon Valley

‘Bloomberg West’ brings you the latest tech news LIVE from Silicon Valley

Episode 18 -Top AI & DataScience News from the week | 19th Sept 2020

Episode 18 -Top AI & DataScience News from the week | 19th Sept 2020

Sumipol & ASTech Assembly & Automation Technology Show

Sumipol & ASTech Assembly & Automation Technology Show

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

  • Trending
  • Comments
  • Latest
Is C.AI Down? Here Is What To Do Now

Is C.AI Down? Here Is What To Do Now

January 10, 2024
Porfo: Revolutionizing the Crypto Wallet Landscape

Porfo: Revolutionizing the Crypto Wallet Landscape

October 9, 2023
A Complete Guide to BERT with Code | by Bradney Smith | May, 2024

A Complete Guide to BERT with Code | by Bradney Smith | May, 2024

May 19, 2024
A faster, better way to prevent an AI chatbot from giving toxic responses | MIT News

A faster, better way to prevent an AI chatbot from giving toxic responses | MIT News

April 10, 2024
Part 1: ABAP RESTful Application Programming Model (RAP) – Introduction

Part 1: ABAP RESTful Application Programming Model (RAP) – Introduction

November 20, 2023
Saginaw HMI Enclosures and Suspension Arm Systems from AutomationDirect – Library.Automationdirect.com

Saginaw HMI Enclosures and Suspension Arm Systems from AutomationDirect – Library.Automationdirect.com

December 6, 2023
Can You Guess What Percentage Of Their Wealth The Rich Keep In Cash?

Can You Guess What Percentage Of Their Wealth The Rich Keep In Cash?

June 10, 2024
AI Compared: Which Assistant Is the Best?

AI Compared: Which Assistant Is the Best?

June 10, 2024
How insurance companies can use synthetic data to fight bias

How insurance companies can use synthetic data to fight bias

June 10, 2024
5 SLA metrics you should be monitoring

5 SLA metrics you should be monitoring

June 10, 2024
From Low-Level to High-Level Tasks: Scaling Fine-Tuning with the ANDROIDCONTROL Dataset

From Low-Level to High-Level Tasks: Scaling Fine-Tuning with the ANDROIDCONTROL Dataset

June 10, 2024
UGRO Capital: Targeting to hit milestone of Rs 20,000 cr loan book in 8-10 quarters: Shachindra Nath

UGRO Capital: Targeting to hit milestone of Rs 20,000 cr loan book in 8-10 quarters: Shachindra Nath

June 10, 2024
Facebook Twitter LinkedIn Pinterest RSS
News PouroverAI

The latest news and updates about the AI Technology and Latest Tech Updates around the world... PouroverAI keeps you in the loop.

CATEGORIES

  • AI Technology
  • Automation
  • Blockchain
  • Business
  • Cloud & Programming
  • Data Science & ML
  • Digital Marketing
  • Front-Tech
  • Uncategorized

SITEMAP

  • Disclaimer
  • Privacy Policy
  • DMCA
  • Cookie Privacy Policy
  • Terms and Conditions
  • Contact us

Copyright © 2023 PouroverAI News.
PouroverAI News

No Result
View All Result
  • Home
  • AI Tech
  • Business
  • Blockchain
  • Data Science & ML
  • Cloud & Programming
  • Automation
  • Front-Tech
  • Marketing

Copyright © 2023 PouroverAI News.
PouroverAI News

Welcome Back!

Login to your account below

Forgotten Password? Sign Up

Create New Account!

Fill the forms bellow to register

All fields are required. Log In

Retrieve your password

Please enter your username or email address to reset your password.

Log In