Pāriet uz galveno navigāciju Pāriet uz meklēšanu Pāriet uz galveno saturu

Implementing Quantum Finite Automata Algorithms on Noisy Devices

  • Utku Birkan*
  • , Özlem Salehi
  • , Viktor Olejar
  • , Cem Nurlu
  • , Abuzer Yakaryilmaz
  • *Šī darba korespondējošais autors
  • Middle East Technical University
  • Ozyegin University
  • QWorld Association
  • P. J. Safarik University
  • Bogazici University

Zinātniskās darbības rezultāts: Nodaļa grāmatā/enciklopēdijā/konferences krājumāKonferences zinātniskais rakstsPētniecībakoleģiāli recenzēts

8 Atsauces (Scopus)

Kopsavilkums

Quantum finite automata (QFAs) literature offers an alternative mathematical model for studying quantum systems with finite memory. As a superiority of quantum computing, QFAs have been shown exponentially more succinct on certain problems such as recognizing the language MODp={aj∣j≡0modp} with bounded error, where p is a prime number. In this paper we present improved circuit based implementations for QFA algorithms recognizing the MODp problem using the Qiskit framework. We focus on the case p= 11 and provide a 3 qubit implementation for the MOD11 problem reducing the total number of required gates using alternative approaches. We run the circuits on real IBM quantum devices but due to the limitation of the real quantum devices in the NISQ era, the results are heavily affected by the noise. This limitation reveals once again the need for algorithms using less amount of resources. Consequently, we consider an alternative 3 qubit implementation which works better in practice and obtain promising results even for the problem MOD31.

OriģinālvalodaAngļu
Rīkotāja publikācijas nosaukumsComputational Science – ICCS 2021 - 21st International Conference, Proceedings
Lapas3-16
Lapu skaits14
Sējums12747 LNCS
Publikācijas statussPublicēts - 2021

Publikāciju sērijas

NosaukumsLecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
Sējums12747 LNCS
ISSN (Drukātā versija)0302-9743
ISSN (Elektroniskā versija)1611-3349

OECD Zinātnes nozare

  • 1.2 Datorzinātne un informātika

Nospiedums

Uzziniet vairāk par pētniecības tēmām “Implementing Quantum Finite Automata Algorithms on Noisy Devices”. Kopā tie veido unikālu nospiedumu.

Citēt šo