2025
2020
2015
0
2
4
6
8
10
12
14
6.3×
$12.6B
$2.0B
>90% of investments in quantum computing
Value by 2035
1,280–2,700
Chemicals
Electric power
Global energy and materials
Oil and gas
Financial industry
Pharmaceuticals and medical products
Travel, transport, and logistics
Advanced industries, insurance, and TMT³
50–100
200–500
80–400
400–600
50–150
50–150
450–800
Quantum technology is reaching a state of commercialization.
The growing quantum technology (QT) ecosystem saw a 6.3× YoY increase in overall investments, with the total economic impact of quantum computing (QC) estimated at $1.3 trillion to $2.7 trillion by 2035.
Investment volume by year,¹
$ billion
Value at stake from QC by 2035, by key segment,²
$ billion
Our annual publication tracks the development of quantum technologies, players, and industry adoption.
The Quantum Technology Monitor
Hybrid computing combines quantum and classical methods to address early use cases.
Download the most recent Monitor
Based on investment data recorded in PitchBook, including investments via private markets (eg, VC funding and corporate investments), public markets (eg, IPOs, SPACs, secondary
public offerings, and PIPEs), and government/university funding; actual investment likely higher (excluding investments with missing details on investment types); data availability on
start-up investment in China is limited. 2Defined as the absolute impact in terms of revenue and cost savings. 3Telecom, media, and technology; excludes technology companies and
quantum computing pure-play players. 4Based on publicly available hybridcomputing descriptions from Alice & Bob, Amazon Bracket, IBM Quantum, Microsoft Azure Quantum,
NVIDIA CUDA-Q, QuEra, and Xanadu. 5High-performance computer.
1
Classical
HPC⁵
Quantum
computingcontribution
Classical
preparation
Initiation: Information
preparation and
preprocessing
Computation: Quantum and
classical parallel task execution
Processing: Outcome
translation and combination
Classical completion
Start of computational task
Connection of classical and quantum resources
Classicalprocess that
handles subproblems
Combining quantum and classical swimlanes
Initial setup
and problem
definition
on HPC
Translation of information
into quantum
circuits
Quantum
process that
handles subproblems
Translation
into classical
bits
Completion handled
on HPC
Final analysis
and integration
of results into
HPC workflow
Hybrid computing process steps⁴
