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    • 2. 发明公开
    • DX 타일 및 퓨얼 스트랜드를 이용한 DX 타일의 룰 변경 방법
    • DX改变使用燃料条的DX地层规则的方法和方法
    • KR1020110121488A
    • 2011-11-07
    • KR1020100041096
    • 2010-04-30
    • 한양대학교 에리카산학협력단성균관대학교산학협력단
    • 권영헌박성하김승재신지훈
    • C12Q1/68
    • G06F19/18C12Q1/6869
    • PURPOSE: A method for changing DX tile using DX tile and fuel strand by changing rule applied to the DX tile is provided to enable pattern change. CONSTITUTION: A DX tile comprises a fuel strand binding part and four sticky ends. The fuel strand has the fuel strand binding part and complementary sequence thereof. The rule applied to the DX tile by binding between the fuel strand and the fuel strand binding part. The DX tile binds with the fuel strand in fluid. A method for changing DX tile rule using the fuel strand comprises: a step of binding the fuel strand to the DX tile having a first rule to generate a frame DX tile from DX tile having the first rule(410); and a step of binding an input strand to the frame DX tile(420).
    • 目的:提供使用DX瓦片和燃料链改变DX瓦片的方法,通过改变应用于DX瓦片的规则来实现图案改变。 构成:DX瓦片包括燃料束结合部分和四个粘性末端。 燃料股具有燃料股结合部分及其互补序列。 该规则通过在燃料股线和燃料股线结合部分之间进行绑定而应用于DX瓷砖。 DX瓦与流体中的燃料链结合。 一种用于使用燃料线改变DX瓦片规则的方法包括:将具有第一规则的所述燃料线束绑定到所述DX瓦片的步骤,以从具有所述第一规则(DX)的DX瓦片生成框架DX瓦片; 以及将输入线绑定到框架DX瓦片(420)的步骤。
    • 4. 发明公开
    • 양자 얽힘을 증가시키는 방법, 이를 이용한 양자 중계 방법 및 양자 중계기
    • 增加量子化的方法,使用量子重复方法和量子重复器
    • KR1020130007207A
    • 2013-01-18
    • KR1020110064362
    • 2011-06-30
    • 한양대학교 에리카산학협력단
    • 권영헌장진호배준우
    • H04B14/00H04B7/14H04B10/30
    • C09J11/04C09J7/20C09J133/08C09J133/10G02B5/30G02B2207/121
    • PURPOSE: A method for increasing quantum entanglement, a quantum relay method using the same, and a quantum relay are provided to solve a problem which does not uses quantum communication by easily reducing quantum entanglement due to incomplete measurement. CONSTITUTION: Two input signals of a quantum state are inputted(110). In case a background noise is in a non-Markovian type(120), the background noise is converted in a Markovian type(130). Both entanglement distillation is performed from the converted background noise and the inputted input signal(150). Time difference between a source input signal and a target input signal is delayed as ESD(Entanglement Sudden Death) generation time. [Reference numerals] (110) Receiving two input signals of a quantum state; (120) Determining a type of background noise; (130) Converting background noise into a Markovian type by delaying one of two input signals as predetermined time when the back ground noise is a non-Markovian type; (140) Calculating a Pauli channel for back ground noise of a Markovian type and mixing predetermined other noise and background noise by using the calculated Pauli channel; (150) Extracting quantum entanglement from an input signal and background noise of a converted Markovian type; (AA) Start; (BB) End
    • 目的:提出一种增加量子纠缠的方法,使用该方法的量子中继方法和量子继电器,以解决由于不完全测量而容易地减少量子纠缠而不使用量子通信的问题。 构成:输入量子态的两个输入信号(110)。 在背景噪声为非马尔可夫型(120)的情况下,背景噪声以马尔可夫型转换(130)。 从转换的背景噪声和输入的输入信号(150)执行纠缠蒸馏。 源输入信号和目标输入信号之间的时间差被延迟为ESD(纠缠突然死亡)生成时间。 (附图标记)(110)接收量子态的两个输入信号; (120)确定背景噪声的类型; (130)当背景噪声为非马尔可夫型时,通过将两个输入信号中的一个延迟预定时间将背景噪声转换为马尔可夫型; (140)通过使用计算的保利通道计算马可夫型背景噪声的保利通道并混合预定的其他噪声和背景噪声; (150)从输入信号提取量子纠缠和转换马尔可夫型的背景噪声; (AA)开始; (BB)结束