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VERSION:2.0
PRODID:Icfo
X-PUBLISHED-TTL:P1W
BEGIN:VEVENT
UID:6aa281542ad7b
DTSTART:20260916T100000Z
SEQUENCE:0
TRANSP:OPAQUE
DTEND:20260916T110000Z
LOCATION:Seminar Room
SUMMARY:ICFO | PERE MUJAL
CLASS:PUBLIC
DESCRIPTION:We introduce a quantum reservoir computing online protocol that
  realizes amplitude encoding on quantum hardware. Our scheme combines mid-
 circuit measurement and reset operations to implement the partial-trace dy
 namics underlying amplitude encoding\, while an indirect measurement schem
 e provides access to reservoir observables without interrupting temporal p
 rocessing. In contrast to other approaches\, our method preserves online o
 peration\, avoids input buffering\, and keeps the runtime linear in the nu
 mber of time steps. We present the theoretical formulation of the protocol
  and a proof-of-principle implementation on quantum hardware\, and we eval
 uate its performance on two standard benchmark tasks. Our results show tha
 t the reservoir dynamics can be monitored through both direct measurements
  of the input qubits and indirect measurements of the memory qubits\, enab
 ling observation of the full system while isolating the internal evolution
  of the reservoir. This work provides a practical route toward scalable ha
 rdware implementations of amplitude-encoded quantum reservoir computing an
 d opens the door to systematic experimental studies of complex quantum res
 ervoirs.
DTSTAMP:20260910T100716Z
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