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Future proof in Quantum Computing #AtosInspirationDay Hermantino Singodiwirjo

Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

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Page 1: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

Future proof in Quantum Computing

#AtosInspirationDay

Hermantino Singodiwirjo

Page 2: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

On the verge of a new industrial revolution

Page 3: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

The limits of miniaturization

0,40

4,00

40,00

400,00

4 000,00

40 000,00

400 000,00

10

100

1 000

10 000

100 000

1 000 000

10 000 000

100 000 000

1 000 000 000

10 000 000 000

1970 1975 1980 1985 1990 1995 2000 2005 2010 2015

Transistorcount(#)

Freq(MHz)

Expon.(Transistorcount(#))

Moore’s law from 1970 till now

Page 4: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

Quantum Computing Speedup

CLASSICAL COMPUTERSTATE OF THE ART CLASSICAL COMPUTER

30 YEARS FROM NOW

TIM

E

Complexity

billions of years

Page 5: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

Quantum computing highlights

▶ Quantum superposition

– 1 qubit : superposition of |0> and |1>

▶ Quantum parallelism : operations on qubitsare computed on the whole superposition atthe same time

▶ Exponential processing power – Exascale supercomputers beaten with only 50-60 qubits (quantum supremacy)

▶ BUT quantum physics says readouts destroyinformation: the quantum computer performsall operations in parallel, but returns onesingle result, randomly!

Page 6: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

Classical and Quantum computing Some key differences

Classic Quantum

Deterministic Probabilistic

Bits 0, 1 Qubits |0>, |1>

Move, copy, delete data information can’t be destroyed or copied

massive readouts as few readouts as possible

Operates at ambiant temperature Operates at very low temperature

Deterministic computation

Page 7: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

Some of the Applications DomainQuantum Speedup expected

Cryptography -Redefines cryptography standards (obsoletes RSA, DSA, AES etc.)

Quantum database search-Enhances information extraction in huge data lakes

Chemistry, science of materials-Bettermediacation?-Enhanced medicaldiagnosis?

Statistical Analysis-Better marketprediction-AI

Page 8: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

Quantum computingReal quantum processors

Fundamental research

Industrialization

10-15y

Design & Prototyping[Today]

Time

Technology

Page 9: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

▶Position as European leader in Quantum Computing

▶Very high level Advisory Board, chaired by our CEO – 6 world class quantum & mathematics experts

▶Atos Quantum R&D Lab

A long term strategic Atos RD program

Page 10: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

▶ A quantum simulator, it is not a quantum

computer

▶ Allows Quantum algorithms development without quantum hardware constraints

▶ Simulates Quantum Processing Units

Anticipating the Quantum leap frog with Atos QLM

Page 11: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

The Quantum Learning MachineUnique Features

Universal technology quantum language

World class, patent pending, emulator – able to simulate up to 40 qubits

Modular and Scalable appliance

1 Genuine hybrid classic-quantum programming

2

3

4

5 High extensibility and interoperable

6 On premises appliance

Hardware agnostic7Powerful Simulation8

Page 12: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

First QLM @ORNL Quantum Computing Institute

▶ Accelerate/Validate ORNL Quantum algorithms dev. thanks to Atos QLM interoperability

▶ Partner to align on a common vision on Quantum computing

▶ Atos Quantum Computing Expertise

Page 13: Future proof in Quantum Computing · Quantum parallelism : operations on qubits are computed on the whole superposition at the same time Exponential processing power –Exascale supercomputers

Our customersAtos Quantum Computing Scientific Community (aQCSC)

Stay tuned! We have more to come…