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Quantum Computer Speaker: 李宥宏.

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Presentation on theme: "Quantum Computer Speaker: 李宥宏."— Presentation transcript:

1 Quantum Computer Speaker: 李宥宏

2 Outline Introduction of Quantum computer Implement of Quantum computer
Application of Quantum computer Challenge of Quantum computer Nowadays research of Quantum computer

3 Will the Moore’s Law be correct in the future ???

4 Possible Solution – Quantum Computer

5 Superposition principle
dual particle-wave behavior Only kwon where the particle is likely to be found Superposition principle a particle can also exist at two places at once

6 Quantum Mechanics n-level system: any state amplitude
orthonormal basis EX: 2-level,choice basis possible state

7 Bits and Qubits Bit: high/low voltage  1/0
One state  either 1 or 0 represent one state at one time EX:300 bits represent one state at one time Qubit: exist or not in Orbit  1/0 One state  possibly 1 or 0 represent several state at one time EX:300 qubits represent at one time

8 Detail in Qubit Two qubits system Superposition states State : 1 0
1 0 State : 0 1 State : 0 0/0 1/1 0/1 1 Superposition states

9 Quantum Parallelism Qubit: Superposition of the 0 and 1
Use different superposition state Compute simultaneously have fantastic power in some problem

10 Shor's factoring algorithm
use conventional algorithm factor a number N in O ( ) use Quantum Parallelism factor a number N in O ( ) factor the number in 400 bits Super computer take one billion years Quantum computer(1000qubits) only take few hours

11 Outline Implement of Quantum computer

12 Qubit System Qubit System exhibit quantum phenomena
for quantum computing control quantum state Measure the state of qubit Quantum error correction

13 Hardware Implement-1 Quantum Dot
Confine single electron in discrete energy level semiconductor materials Control by Laser 1 qubit solid-state device (about 30nm)

14 波峰波谷連續出現superposition state
In 1999, Japan 日本電氣公司,中村泰信 波峰波谷連續出現superposition state 代表0的波谷 代表1的波峰 Quantum dot 的電子分佈圖

15 Hardware Implement-2 Ion traps Ion trap
4 rod electrodes AC 1kv MHz trap the ions End-rings Charged to prevent escaping ions Ion trap

16 Stanford and IBM First demonstration (in 2001)
Shor's factoring algorithm 7 qubits system to find the factor of 15 System tube including molecule that has 7 nuclear spins

17 7 Nuclear Spins programmed by radio frequency pulses detected by NMR


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