World Congress 2024 Aug 20, 2024 Session details

The Quantum Computing Future

Alexander Glätzle , Florian Neukart , Jan Goetz , Tomislav Tipurić

Transistors have reached atomic limits, signaling the exhaustion of Moore’s Law. Learn how quantum entanglement will solve combinatorial nightmares and why developers must master hybrid algorithms today.

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#1 about 4 min

Redefining computing limits with quantum mechanics

How principles of superposition enable quantum computers to process multiple states simultaneously.

#2 about 2 min

Building full-stack superconducting quantum hardware

Engineering silicon processors with microwave structures controls qubits at cryogenic temperatures.

#3 about 2 min

Overcoming hardware limits with quantum error correction

Why physical qubit instability requires extensive error correction to achieve viable commercial computing power.

#4 about 5 min

Scaling quantum systems using neutral atom technology

Trapping strontium atoms in laser-cooled vacuum chambers allows massive hardware scaling without fabricating complex circuits.

#5 about 2 min

Extending operational stability with optical lattices

Using crystals of light to trap over a thousand atomic qubits maintains system viability for an hour.

#6 about 3 min

Increasing computing power through quantum gate fidelity

How reducing individual operation errors prevents compounding failures and enables deep entanglement across multiple qubits.

#7 about 4 min

Simulating complex chemistry and material science properties

Modeling intrinsic molecular behavior solves constraints that overwhelm traditional high-performance supercomputing capacity.

#8 about 3 min

Democratizing access through cloud-based quantum data centers

Hosting stable quantum hardware environments provides remote access for researchers and enterprise software testing.

#9 about 3 min

Accelerating climate and battery material research

Combining quantum machine learning with specialized algorithms optimizes battery charge transfers and global climate models.

#10 about 2 min

Preparing enterprises for practical quantum computing integration

Identifying suitable business workflows helps organizations prepare to adopt new mathematical problem-solving configurations securely.

#11 about 2 min

Solving immense scheduling variables beyond classical capabilities

Processing deeply intertwined matrices resolves complex logistical combinations like nationwide train networks and vast academic schedules.

#12 about 2 min

Educating developers for the new quantum programming paradigm

Writing efficient quantum code demands a foundational shift away from linear algorithms toward entanglement logic.

#13 about 3 min

Envisioning an interconnected diverse quantum hardware landscape

Distributing unique algorithms across specialized processors paves the way for scalable quantum memory and networking communications.

Matching moments

8:17 min

Practical applications and hybrid solutions for quantum computing advantage

Alexander Glätzle Alexander Glätzle +3 · WWC 2025

4:06 min

Combining quantum, neural, and classical computing paradigms

Stephen Jones · Coffee With Developers

2:35 min

Current state of quantum hardware and market investments

Julian Julian · WWC 2025

52 sec

Software development challenges in quantum computing ecosystems

Alex Waldherr Alex Waldherr · WWC 2024

1:57 min

Current state of quantum computing capabilities

Jakub Gaj Jakub Gaj · WWC Europe 2026

2:13 min

Current landscape of quantum applications and cloud access

Ilie-Daniel Gheorghe-Pop Ilie-Daniel Gheorghe-Pop · WWC 2025

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