Quantum Computing Market Trends, Analysis & Forecast, 2032
As per a recent research report, Quantum Computing Market surpass USD 65 Bn by 2032.
The quantum computing market is set to expand
at an appreciable CAGR from 2023 to 2032, led by the rapid adoption of quantum
computing service (QCaaS) across defense, finance, healthcare, chemical, and
pharmaceutical sectors.
Quantum computers are gaining significant
traction, attributed to their ability to perform complex calculations within
seconds. The technology is finding crucial applications in the field of
agriculture, helping farmers boost agricultural productivity and yield.
Additionally, modern quantum computing platforms are being used to produce
chemicals needed to manufacture energy-efficient fertilizers. It can help
decode complex molecular processes, enabling more efficient and carbon-neutral
farming applications, including the production of fertilizers.
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Over the past decade, the agriculture sector
has turned to sustainable and zero-emission feed additives and agricultural
solutions to curb the increasing impact of crop as well as animal farming on
the planet. The advent of low-methane additives is accelerating R&D and
innovation in the anti-methane vaccines space. Quantum computing is seen as a
promising solution in vaccine development by identifying suitable antibodies
via molecule stimulation, saving hefty costs from trials. As per the U.S. EPA,
quantum computing could potentially help achieve carbon reduction of up to an
additional 1 gigaton/year by 2035.
The quantum computing market is categorized
based on component, deployment, application, end-user, and region.
Based on component, the market is bifurcated
into service and software. Among these, the service segment was valued at over
350 million in 2022, owing to the rising demand for consulting services.
Moreover, massive investments in the development of advanced computing
technologies and an increasing number of SMEs across developed and developing
economies will further stimulate industry revenue streams.
In terms of end-user, the industry is
classified into healthcare and BFSI. The quantum computing market size from the
healthcare segment will grow at over 35% CAGR from 2023 to 2032. Quantum
computing is gaining popularity across healthcare owing to its effectiveness in
developing life-saving drugs, early disease detection, and faster DNA
sequencing. Ongoing digitization & automation across the healthcare sector
will propel the adoption of quantum computing in R&D, thus, accelerating
business growth.
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By application, the demand for quantum
computing in machine learning will increase significantly through 2032 due to
the extensive use of the product in the hardware setup of ML systems.
Quantum-enhanced machine learning helps accelerate tasks performed by
conventional ML programs. It is used to create new ML algorithms, expedite
processes and develop quantum neural networks with enhanced processing speed.
Regionally, the Asia Pacific quantum computing
market was worth more than USD 300 million in 2022. The demand for quantum
computing is set to surge across APAC countries due to rapid industrialization
and the adoption of cutting-edge automated solutions to boost manufacturing
output. Furthermore, the demand for computing solutions for ML, stimulation,
and optimization will stimulate market growth.
Partial
chapters of report table of contents (TOC):
Chapter 2 Executive Summary
2.1 Quantum
computing industry 360º synopsis, 2018 – 2032
2.2 Business
trends
2.2.1 Total
addressable market (TAM) trends, 2023 - 2032
2.3 Regional
trends
2.4 Component
trends
2.5
Deployment model trends
2.6
Application trends
2.7 End-user
trends
Chapter 3 Quantum Computing Industry
Insights
3.1 Impact of
COVID-19 outbreak
3.1.1 By
region
3.1.1.1 North
America
3.1.1.2 Europe
3.1.1.3 Asia
Pacific
3.1.1.4 Latin
America
3.1.1.5 MEA
3.2 Impact
analysis of Russia-Ukraine war
3.3 Quantum
computing industry ecosystem analysis
3.3.1
Hardware providers
3.3.2
Platform providers
3.3.3
SQuanervice providers
3.3.4
Distribution channel
3.3.5 End
users
3.3.6 Profit
margin
3.3.7 Vendor
matrix
3.4
Technology & innovation landscape
3.4.1 AL and
ML
3.4.2 IoT
3.4.3 Qubit
quantum computing
3.5 Evolution
of Quantum Computing
3.6
Regulatory landscape
3.7 Patent
analysis
3.8 Key
initiatives & news
3.9 Industry
impact forces
3.9.1 Growth
drivers
3.9.1.1 Rising
investments in quantum computing technology
3.9.1.2 Demand
for high performance computing
3.9.1.3 Demand
from medical research and financial markets
3.9.1.4 Increasing
number of strategic alliances for research and development
3.9.1.5 Rising
need to solve complex problems.
3.9.2
Industry pitfalls and challenges
3.9.2.1 Operational
challenges
3.9.2.2 Lack
of highly skilled professionals
3.10 Growth
potential analysis
3.11 Porter's
analysis
3.12 PESTEL
analysis
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