Difference between revisions of "Quantum Computing Threat"

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(Solutions)
(Problems)
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* Existing signatures or encrypted files will continue to need to be processed for many years to come. Certificate keys have a life time of up to 25 years.
 
* Existing signatures or encrypted files will continue to need to be processed for many years to come. Certificate keys have a life time of up to 25 years.
 
* The approval process for new cryptographic algorithms takes many years of standardization and test to be sure that the work effort to brake them is sufficiently high.
 
* The approval process for new cryptographic algorithms takes many years of standardization and test to be sure that the work effort to brake them is sufficiently high.
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* Most of the challenges to the [[Quantum Computing Threat]] are to be found in the current reliance on [[Public Key Cryptography]] for protecting the internet. See that page for more details on this particular threat.
  
 
==Solutions==
 
==Solutions==

Revision as of 13:26, 29 June 2023

Full Title or Meme

Successful Quantum Computing creates an existential threat to existing cryptographic algorithms since quantum computing algorithms exist to crack traditionally intractable problems like factoring the multiplication of two large primes used in RSA.

Context

Public key cryptography relies on certain mathematical problems that are very hard to solve, such as factoring large numbers that are the product of large prime numbers or finding the discrete logarithm of a random elliptic curve element with respect to a publicly known base point. If you know the private key components, you can sign the document or decrypt the data. If you don't have the private key and cannot solve the math, you cannot sign the document or decrypt the data.

Problems

  • Many systems exist which depend on existing public key technology. Some of these are embedded in hardware that cannot be changed once deployed.
  • Existing signatures or encrypted files will continue to need to be processed for many years to come. Certificate keys have a life time of up to 25 years.
  • The approval process for new cryptographic algorithms takes many years of standardization and test to be sure that the work effort to brake them is sufficiently high.
  • Most of the challenges to the Quantum Computing Threat are to be found in the current reliance on Public Key Cryptography for protecting the internet. See that page for more details on this particular threat.

Solutions

Public Key Cryptography has many benefits over Secret Key Cryptography, the effort to create new algorithm to preserve the current PK protocols is underway now triggers for deprecation of RSA and some EC have already been set to the publication of new QR standards by NIST. It is now expected that the RSA and EC algorithms will be accepted by the government until 2035. These dates are subject to revision.

References

  • For more information on Quantum Information Theory see that page in this wiki.
  • It is likely that this threat was known to the NSA in Summer 2015 based on their action on Suite B.