quantum computer

英 [ˈkwɒntəm kəmˈpjuːtə(r)] 美 [ˈkwɑːntəm kəmˈpjuːtər]

网络  量子计算机; 量子电脑; 量子计算; 量子盘算机; 量子电子计算机

计算机



双语例句

  1. Simulating a quantum computer on a traditional classical computer is a hard problem.
    在一台传统的经典计算机上模拟量子计算机是个难题。
  2. The qcl quantum computer simulator
    qcl量子计算机模拟器
  3. So when will the first scalable quantum computer be built?
    那么何时才能建成第一台可伸缩的量子计算机呢?
  4. Freed of this either-or constraint, even a modest quantum computer would vastly outpace the fastest supercomputer.
    摆脱了这种非此即彼的限制后,即便是一台一般般的量子计算机也能完爆最快的超级计算机。
  5. Quantum computer has been the staff of high-end physics and science fiction, but now you can buy your very own quantum computer.
    量子计算机一直应用于高端物理学和其他科学领域,但现在你也可以购买一台属于自己的量子计算机了。
  6. This election ordered number through quantum computer, using duality, symmetry, conservation of nature, etc., they do not have to worry the Overfly girl could fly to where to go.
    这样通过量子计算机选排列数,利用对偶性,对称性,守恒性等等性质,他们根本不需担心怡飞姑娘能飞到哪里去。
  7. Designing the quantum computer that was the heart of the Super-Intelligence Device ( Sid, as Beverly and I called it) had earned us a Nobel prize.
    因为设计这个以量子计算机为核心的超级智能装置,我们获得了诺贝尔奖的殊荣。
  8. This is a huge technological achievement and it is a critical step to demonstrating that it is possible to build the ultimate computer-a quantum computer in silicon.
    这是重大的科技成就,是表明制造‘终极电脑’(用硅原子制造的量子电脑)可行性的关键一步。
  9. Nuclear magnetic resonance quantum computer and parallel quantum computing
    核磁共振量子计算机与并行量子计算
  10. To build a working quantum computer, qubits will have to become more resilient, and progress so far has been slow.
    要想建造一台实用的量子计算机,丘比特必须更为强韧,但这方面至今进展缓慢。
  11. Now Vlatko Vedral, an Oxford physicist, examines the claim that bits of information are the universe's basic units, and the universe as a whole is a giant quantum computer.
    近期,牛津大学物理学家VlatkoVedral审慎地论证了认为信息是组成宇宙的最基本单位,而宇宙本身就是个巨大的量子计算器的理论。
  12. A Novel Kind of Architecture with High-Efficiency and Error-Tolerance of Universal Quantum Computer
    一种高效、容错的通用量子计算机体系结构
  13. An electron's quantum state carries information, making it important for a viable quantum computer.
    一个电子的量子态携带着信息,这对制造量子计算机十分重要。
  14. Quantum Computer and Geometric Quantum Phase
    量子几何相位在量子计算机中的应用
  15. Coherent control with lasers and logic gates in quantum computer
    激光相干控制与量子计算中的逻辑门
  16. It is useful for quantum logic gate and quantum computer memory.
    该编码既适用于量子逻辑门的防错和纠错,也适用于防止量子计算机存储单元的解相干。
  17. In this paper, we can control the system decoherence by control magnitude and type of interaction, which can enlighten in theory people well on studying quantum communications and developing quantum computer.
    在此我们通过控制相互作用大小和类型来控制系统的退相干,对人们研究量子通信和研制量子计算机具有理论指导意义。
  18. Living things computer, molecule computer, optical computer, superconductivity computer and quantum computer appearing in 21 centuries the main body of a book has been introduced, these new model computers will produce significant effect's to future.
    本文介绍了在21世纪出现的生物计算机,分子计算机、光计算机、超导计算机和量子计算机,这些新型计算机将对未来产生重大影响的。
  19. This mainly reflects in two aspects of connotation intelligence computer and quantum computer.
    这主要体现在内涵智能机和量子计算机两个方面。
  20. It can be used to solve yawp caused by disaccord processing speed among gates in quantum computer.
    这可以解决量子计算机中的各个组件或者部门之间的时间不匹配造成的噪声问题。
  21. Quantum Superposition and Entangled State in the Theories of Quantum Computer
    量子计算机理论中的量子叠加和量子纠缠
  22. Optical computer, biological computer and quantum computer will replace the silicon chip technique in ten years.
    10年后硅芯片技术将会被光学计算机、生物计算机、量子计算机所替代。
  23. We have pointed out its applications to fine measurement and quantum information optics and quantum computer.
    并且指出此猫态在精密测量、量子信息光学以及量子计算机中应用。
  24. What quantum computation concern are quantum computer and quantum algorithm suitable for quantum computer.
    量子计算的研究对象是量子计算机和适合于量子计算机的量子算法。
  25. It includes quantum cryptography, quantum communication and quantum computer and so on.
    量子信息学包括量子密码术、量子通信、量子计算机等几个方而,有着很重大的应用价值。
  26. Quantum computer is a perfect tool to simulate such systems.
    原子核是量子体系,量子体系模拟的理想工具是量子计算机。
  27. Therefore, quantum computer pave a new way for the development of computer science.
    因此,量子计算机为计算机的发展开辟了一个新的天地。
  28. The last chapter gives a simple introduction on applications of quantum entanglement in quantum teleportation and quantum computer field.
    第四章对量子纠缠在隐形传输和量子计算机领域的应用做了简单介绍。
  29. Semiconductor quantum dots is one of the solid-state devices which are most capable to build quantum computer.
    半导体量子点是最有可能实现量子计算机的固态器件之一。
  30. Quantum computer is promising for the great speed of its parallel computation and quantum simulation.
    量子计算机因其并行计算和量子模拟的巨大速度优势,有着非常诱人的应用前景。