Josephson junction - definition. What is Josephson junction
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QUANTUM PHYSICAL PHENOMENON
Josephson junction; Josephson Effect; Josephson Junction; Jospehson effect; Josephson junction technique; Josephson junction techniques; Josephson phase; Josephson penetration depth; Josephson energy; Josephson junctions; The Josephson effect; Josephson frequency; Dayem bridge; Josephson relation; Josephson relations
  • </math> is due to the finite value of the superconductor bandgap and not reproduced by the above equations.
  • The [[electrical symbol]] for a Josephson junction
  • National Institute of Standards and Technology]] as a standard volt
  • Diagram of a single Josephson junction. A and B represent superconductors, and C the weak link between them.

Josephson Junction         
<electronics> A type of electronic circuit capable of switching at very high speeds when operated at temperatures approaching absolute zero. The low power dissipation of a Josepshson Junction makes it useful in {high density computer circuits}. (2004-06-28)
Josephson junction         
¦ noun Physics an electrical device in which two superconducting metals are separated by a thin layer of insulator, across which an electric current may flow in the absence of a potential difference.
Origin
1960s: named after the British physicist Brian D. Josephson.
Josephson effect         
In physics, the Josephson effect is a phenomenon that occurs when two superconductors are placed in proximity, with some barrier or restriction between them. It is an example of a macroscopic quantum phenomenon, where the effects of quantum mechanics are observable at ordinary, rather than atomic, scale.

ويكيبيديا

Josephson effect

In physics, the Josephson effect is a phenomenon that occurs when two superconductors are placed in proximity, with some barrier or restriction between them. It is an example of a macroscopic quantum phenomenon, where the effects of quantum mechanics are observable at ordinary, rather than atomic, scale. The Josephson effect has many practical applications because it exhibits a precise relationship between different physics quantities, such as voltage and frequency, facilitating highly accurate measurements.

The Josephson effect produces a current, known as a supercurrent, that flows continuously without any voltage applied, across a device known as a Josephson junction (JJ). These consist of two or more superconductors coupled by a weak link. The weak link can be a thin insulating barrier (known as a superconductor–insulator–superconductor junction, or S-I-S), a short section of non-superconducting metal (S-N-S), or a physical constriction that weakens the superconductivity at the point of contact (S-c-S).

Josephson junctions have important applications in quantum-mechanical circuits, such as SQUIDs, superconducting qubits, and RSFQ digital electronics. The NIST standard for one volt is achieved by an array of 20,208 Josephson junctions in series.