20240013085. ELECTRONIC CIRCUIT AND CALCULATING DEVICE simplified abstract (KABUSHIKI KAISHA TOSHIBA)

From WikiPatents
Jump to navigation Jump to search

ELECTRONIC CIRCUIT AND CALCULATING DEVICE

Organization Name

KABUSHIKI KAISHA TOSHIBA

Inventor(s)

Hayato Goto of Kawasaki Kanagawa (JP)

Yinghao Ho of Kawasaki Kanagawa (JP)

Noritsugu Shiokawa of Yokohama Kanagawa (JP)

Tamio Kawaguchi of Kawasaki Kanagawa (JP)

ELECTRONIC CIRCUIT AND CALCULATING DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240013085 titled 'ELECTRONIC CIRCUIT AND CALCULATING DEVICE

Simplified Explanation

The abstract describes an electronic circuit that includes qubits, couplers, resonators, filters, and a readout conductive member. The first coupler consists of two resonators, one coupled with the first qubit and the other with the second qubit. The first filter includes a filter portion, an other-filter portion, and a readout portion, which are respectively coupled with the first resonator, the second resonator, and the first readout conductive member.

  • The electronic circuit includes qubits, couplers, resonators, filters, and a readout conductive member.
  • The first coupler consists of a first resonator and a second resonator.
  • The first resonator is coupled with the first qubit.
  • The second resonator is coupled with the second qubit.
  • The first filter includes a filter portion, an other-filter portion, and a readout portion.
  • The filter portion is coupled with the first resonator.
  • The other-filter portion is coupled with the second resonator.
  • The readout portion is coupled with the first readout conductive member.

Potential applications of this technology:

  • Quantum computing
  • Quantum information processing
  • Quantum communication

Problems solved by this technology:

  • Enhancing the performance and efficiency of electronic circuits in quantum systems
  • Improving the coupling between qubits and resonators
  • Enhancing the filtering capabilities of resonators

Benefits of this technology:

  • Improved quantum computing capabilities
  • Faster and more accurate quantum information processing
  • Enhanced quantum communication systems


Original Abstract Submitted

according to one embodiment, an electronic circuit includes a first qubit, a second qubit, a first coupler, a first readout conductive member, and a first filter. the first coupler includes a first resonator and a second resonator. the first resonator is couplable with the first qubit. the second resonator is couplable with the second qubit. the first filter includes a first filter portion, a first other-filter portion, and a first readout portion. the first filter portion is couplable with the first resonator. the first other-filter portion is couplable with the second resonator. the first readout portion is couplable with the first readout conductive member.