quantum computer 中文意思是什麼

quantum computer 解釋
昆騰電腦
  • quantum : n. (pl. -ta )1. 量,額;定量,定額;份;總量。2. 【物理學】量子。
  • computer : n. 1. 計算者。2. (電子)計算機;計量器。-ism 電子計算機主義〈認為電子計算機萬能等〉。-erite, -nik 計算機專家;計算機工作者。
  1. With results coming so thick and fast, it is no wonder that, as monroe says, “ many feel that ion traps are well ahead of other technology in the quest to build a large - scale quantum computer

    看到這些能夠執行既多且快的成果,難怪門羅會說:很多人覺得,在建造大尺度的量子電腦上,離子阱比其他技術都先進多了。
  2. Researchers have proposed many implementation technologies such as nmr ( nuclear magnetic resonance ), ion trap etc. the 5 qubits and 7 qubits quantum computer have been built in laboratory

    已經提出了多種量子計算機的物理實現技術,如核磁共振、離子阱等。目前在實驗室中已經研製出了7位量子計算機原型系統,量子計算機的可行性問題已經解決。
  3. The quantum computer has much more computing power than classic computer. it is a new direction for the future computer

    量子計算機由於利用量子力學系統的本質特性而具有極高的計算性能,是未來計算機發展的一個方向。
  4. With the development of the science and technology, especially the discovery of the quantum algorithm and quantum error correction, the quantum information and quantum computer becomes the hot subject of the theory and the experiment

    隨著科學技術的發展,特別是量子演算法、量子糾錯的出現,量子信息和量子計算機成為理論和實驗工作者的研究熱點。
  5. A quantum computer operates on quantum bits, or qubits, instead of ordinary bits

    量子電腦是以量子位元而非一般位元來運作。
  6. Liquid - state nmr quantum computer

    液態核磁共振量子電腦
  7. The huge number of choices ? at least 10120 vacua ? seemed to demand vast computational power, perhaps even a quantum computer

    但面對數量如此龐大(至少有10120個真空)的選項,似乎也得有驚人的計算能力才足以負荷,或許還得靠量子電腦。
  8. Quantum mechanics and quantum computer

    量子力學與量子計算機
  9. Progress in quantum computer research

    量子計算機研究進展
  10. Measurement of the nuclear spin state in kane ' s solid - state quantum computer

    固體量子計算機中核自旋讀出
  11. Qnc is a environment for developing quantum computer simulations

    Qnc是一個用於開發量子計算機模擬的環境。
  12. From information theory of computer to information theory of quantum computer

    從電腦信息論到量子計算機信息論
  13. He would need a quantum computer with millions of processors,

    要做到這點他需要一臺量子計算機,還有上百萬個處理器
  14. The technologies of quantum computer implementation have been becoming perfect gradually

    量子計算機的實現技術也在不斷發展。
  15. This architecture is much simpler than pure quantum computer, and has equivalent performance

    與純量子計算機結構相比,該方案具有性能相當,實現簡單的優點。
  16. The key problem to the realization of the quantum computer is how to construct the quantum bit and how to accomplish the quantum logical operations

    製造實用量子計算機的關鍵問題是構造量子位以及對量子位進行量子邏輯操作。
  17. The quantum gate array is the natural quantum generalization of acyclic combinational logic " circuit " studied in conventional computational complexity theory. in 1995, barenco showed that almost any two - bit gate is universal, so building a feasible two - bit logic gate is the first step to engineer a quantum computer. in principle, the quantum bit can be carried by any two states system

    在眾多的量子計算機模型中目前討論最廣泛的是量子計算機門組網路模型,量子計算機門組網路模型是經典計算機門組網路結構的量子推廣,它是根基於barenco等人所證明的「一個兩比特受控操作和對單比特進行任意操作的門可以構成一個『通用量子邏輯門組』 」之上的。
  18. Dmss have attracted a great deal of attention because of their potential application to spin - electronic device and quantum computer dull to their combined properties of both magnetic materials and semiconductors

    由於這種材料具有半導體和磁性材料的綜合特性,可望廣泛應用於未來的自旋電子器件以及量子計算機中,從而引起了人們極大的興趣。
  19. Based on the theory model of quantum computing and the quantum computing technique in existence, we have proposed the cooperating architecture of quantum computer. in this architecture, it uses the classic processor as its control unit, and use the quantum arithmetic logical unit and quantum memory unit as its co - process unit

    針對這種情況,通過對量子計算技術的深入研究,全面剖析現有量子計算系統,借鑒經典計算機中的研究成果,作者提出了協同量子計算機體系結構方案,在該方案中,使用經典計算機完成量子程序中的常規數據處理和程序邏輯控制,而將量子計算部件做為協處理器,只負責完成量子計算。
  20. Therefore, by exerting controllable atomic array and quantum states, it is possible for physical realization of a quantum computer and the communication of quantum states. it is shown that a negative detuning of the laser field from the atomic resonance will lead to nonzero light pressure forces and reduce velocities along the laser beam axis

    研究結果表明,當選擇負失諧時,原子將受到來自激光場的阻滯力,在它的作用下,原子沿激光束方向的運動速度大大減小,溫度降低,表現為冷卻效應。
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