跨學(xué)科合作是推進(jìn)量子計(jì)算研究的關(guān)鍵。
The challenge of quantum computing is not just technical but also conceptual.
量子計(jì)算的挑戰(zhàn)不僅是技術(shù)上的,也是概念上的。
Quantum algorithms have the potential to revolutionize fields such as cryptography and materials science.
量子算法有可能徹底改變密碼學(xué)和材料科學(xué)等領(lǐng)域。
The interplay between quantum mechanics and information theory is a rich field of study.
量子力學(xué)和信息理論之間的相互作用是一個(gè)豐富的研究領(lǐng)域。
Understanding the fundamental limits of computation is crucial for the future of technology.
理解計(jì)算的基本限制對(duì)于技術(shù)的未來至關(guān)重要。
The development of topological quantum computing could lead to more robust quantum systems.
拓?fù)淞孔佑?jì)算的發(fā)展可能會(huì)導(dǎo)致更健壯的量子系統(tǒng)。
Quantum error correction is essential for building a scalable quantum computer.
量子糾錯(cuò)對(duì)于構(gòu)建可擴(kuò)展的量子計(jì)算機(jī)至關(guān)重要。
Collaboration across disciplines is essential for the advancement of quantum computing.
跨學(xué)科的合作對(duì)于量子計(jì)算的進(jìn)步至關(guān)重要。
The development of quantum computing will have profound implications for cryptography and cybersecurity.
量子計(jì)算的發(fā)展將對(duì)密碼學(xué)和網(wǎng)絡(luò)安全產(chǎn)生深遠(yuǎn)的影響。
Quantum supremacy is not the end goal; it is a milestone on the path to fully functional quantum computers.
量子霸權(quán)不是最終目標(biāo);它是通往功能齊全的量子計(jì)算機(jī)道路上的一個(gè)里程碑。
The realization of a practical quantum computer will require breakthroughs in both hardware and software.