Quantum Computing for Computer Architects
暫譯: 量子計算與計算機架構設計

Chong/Metodi

  • 出版商: Morgan & Claypool
  • 出版日期: 2006-11-20
  • 售價: $1,920
  • 貴賓價: 9.5$1,824
  • 語言: 英文
  • 頁數: 154
  • ISBN: 1598294105
  • ISBN-13: 9781598294101
  • 相關分類: 量子計算
  • 海外代購書籍(需單獨結帳)

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商品描述

Description

Quantum computationmay seem to be a topic for science fiction, but small quantum computers have existed for several years and larger machines are on the drawing table. These efforts have been fueled by a tantalizing property: while conventional computers employ a binary representation that allows computational power to scale linearly with resources at best, quantum computations employ quantum phenomena that can interact to allow computational power that is exponential in the number of “quantum bits” in the system. Quantum devices rely on the ability to control and manipulate binary data stored in the phase information of quantum wave functions that describe the electronic states of individual atoms or the polarization states of photons. While existing quantum technologies are in their infancy, we shall see that it is not too early to consider scalability and reliability. In fact, such considerations are a critical link in the development chain of viable device technologies capable of orchestrating reliable control of tens of millions quantum bits in a large-scale system. The goal of this lecture is to provide architectural abstractions common to potential technologies and explore the systemslevel challenges in achieving scalable, fault-tolerant quantum computation.

The central premise of the lecture is directed at quantum computation (QC) architectural issues. We stress the fact that the basic tenet of large-scale quantum computing is reliability through system balance: the need to protect and control the quantum information just long enough for the algorithm to complete execution. To architectQCsystems, onemust understand what it takes to design and model a balanced, fault-tolerant quantum architecture just as the concept of balance drives conventional architectural design. For example, the register file depth in classical computers is matched to the number of functional units, the memory bandwidth to the cache miss rate, or the interconnect bandwidth matched to the compute power of each element of a multiprocessor. We provide an engineering-oriented introduction to quantum computation and provide an architectural case study based upon experimental data and future projection for ion-trap technology.We apply the concept of balance to the design of a quantum computer, creating an architecture model that balances both quantum and classical resources in terms of exploitable parallelism in quantum applications. From this framework, we also discuss the many open issues remaining in designing systems to perform quantum computation.

 

商品描述(中文翻譯)

**描述**

量子計算可能看起來像是科幻小說的主題,但小型量子電腦已經存在了幾年,而更大型的機器正在設計中。這些努力受到一個誘人的特性驅動:傳統電腦使用的二進位表示法使得計算能力在資源上最多只能線性擴展,而量子計算則利用量子現象的互動,能夠實現計算能力隨著系統中“量子位元”(quantum bits)的數量呈指數增長。量子設備依賴於控制和操作儲存在描述單個原子電子狀態或光子極化狀態的量子波函數相位信息中的二進位數據的能力。儘管現有的量子技術仍處於初期階段,但我們將看到,考慮可擴展性和可靠性並不為時已晚。事實上,這些考量是開發能夠在大型系統中可靠控制數千萬量子位元的可行設備技術的關鍵環節。本次講座的目標是提供潛在技術的架構抽象,並探討實現可擴展、容錯量子計算的系統級挑戰。

本次講座的核心前提是針對量子計算(QC)架構問題。我們強調大型量子計算的基本原則是通過系統平衡來實現可靠性:需要保護和控制量子信息,直到算法完成執行。要設計量子計算系統,必須了解設計和建模一個平衡的、容錯的量子架構所需的條件,就像平衡的概念驅動傳統架構設計一樣。例如,經典電腦中的寄存器檔深度與功能單元的數量相匹配,內存帶寬與快取未命中率相匹配,或互連帶寬與每個多處理器元素的計算能力相匹配。我們提供了一個以工程為導向的量子計算介紹,並基於實驗數據和對離子陷阱技術的未來預測提供了一個架構案例研究。我們將平衡的概念應用於量子電腦的設計,創建一個在量子應用中平衡量子和經典資源的架構模型,從而利用可開發的平行性。在這個框架下,我們還討論了設計執行量子計算的系統中仍然存在的許多未解決問題。