首页> 外文会议>Asia-Pacific World Congress on Computer Science and Engineering >Backchanneling Quantum Bit (Qubit) 'Shuffling': Quantum Bit (Qubit) 'Shuffling' as Added Security by Slipstreaming Q-Morse
【24h】

Backchanneling Quantum Bit (Qubit) 'Shuffling': Quantum Bit (Qubit) 'Shuffling' as Added Security by Slipstreaming Q-Morse

机译:反向通道化量子比特(Qubit)'改组':量子比特(Qubit)'改组'作为通过滑流Q-莫尔斯而增加的安全性

获取原文

摘要

A fresh look at the way secure communications is currently being done has been undertaken as a consequence of the large hacking's that have taken place recently. A plausible option maybe a return to the future via Morse code using how a quantum bit (Qubit) reacts when entangled to suggest a cypher. This quantum cyphers uses multiple properties of unique entities that have many random radicals which makes hacking more difficult that traditional 'Rivest-Shamir-Adleman' (RSA), 'Digital Signature Algorithm' (DSA) or 'Elliptic Curve Digital Signature Algorithm' (ECDSA). Additional security is likely by Backchannelling (slipstreaming) Quantum Morse code (Q-Morse) keys composed of living and non-living entities. This means Blockchain ledger history (forwards-backwards) is audited during an active session. Verification keys are Backchannelling (slipstreaming) during the session (e.g. train driver must incrementally activate a switch otherwise the train stops) using predicted-expected sender-receiver properties as well as their past history of disconformities to random radicals encountered. In summary, Quantum Morse code (Q-Morse) plausibly is the enabler to additional security by Backchannelling (slipstreaming) during a communications session.
机译:由于最近发生了大规模的黑客攻击,因此对安全通信的方式进行了重新审视。可能的选择也许是通过摩尔斯电码返回未来,即使用量子位(Qubit)在纠缠以暗示密码时的反应。该量子密码使用具有许多随机基团的独特实体的多种属性,这使得黑客攻击比传统的“ Rivest-Shamir-Adleman”(RSA),“数字签名算法”(DSA)或“椭圆曲线数字签名算法”(ECDSA)更为困难。 )。通过由活动和非活动实体组成的量子摩尔斯电码(Q-Morse)密钥进行反向通道化(补充码流),可能会提高安全性。这意味着在活动会话期间将审核区块链分类帐历史记录(向前-向后)。验证密钥是会话中的反向通道(滑流)(例如,火车驾驶员必须逐步激活开关,否则火车会停止),使用的是预期的发送者-接收者属性以及它们过去遇到的与随机基元不符的历史记录。总而言之,量子莫尔斯电码(Q-Morse)可能是在通信会话期间通过反向通道化(滑流)实现额外安全性的促成因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号